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Charcoal Retort Kiln

1 October, 2017
 

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The Farming Chefs

1 October, 2017
 

Harper Bradshaw and his Massey-Ferguson. 

Michael Beauter is garden manager and sous chef at Harper’s Table, where flowers are in the garden and on the menu.

Kevin Jamison’s New Earth Farm supplies his Commune restaurants.

At New Earth, compost and homemade biochar nourish crops and soil, and bees are kept away from nearby lands that use pesticides. Early on, Jamison saved a friendly chicken from a cull. She’s called Girlfriend.

Sydney Meers, above, grew up gardening. 

Meers grows produce, herbs and flowers for Stove with the help of honeybees, music and a patrolling cat. 

Herbs and tomatoes were the plan. Each year, the plan grew. Today everything in the garden starts from seeds, some from kitchen waste. Sunflowers add beauty and bring bees, who pollinate the crops.

Harper Bradshaw and his Massey-Ferguson. 

It started small – a tray of micro-greens under a grow light in the restaurant kitchen.

Now spring finds chef Harper Bradshaw driving a red Massey-Ferguson tractor across a large garden, turning the soil while sous chef Michael Beauter transfers seedlings into the ground.

These plants still start on a baker’s half-sheet tray in the kitchen, but this one bears a handwritten sign warning herbivores away: “Not micro-greens on this tray.” These plants have been allowed to grow large enough to move outdoors, where they will mature into vegetables to be served at Harper’s Table in downtown Suffolk.

Michael Beauter is garden manager and sous chef at Harper’s Table, where flowers are in the garden and on the menu.

Bradshaw and Beauter aren’t alone in trading their toques for brimmed hats and sunblock. Across the region, chefs are taking farm-to-table literally, not only buying local but also growing their own fruits and vegetables, and producing their own eggs.

In Bradshaw’s backyard, herbs and flowers grow in three raised beds that were the original garden real estate. As ambition grew, so did the garden, and now tilled soil spreads out around and beyond them.

“Every season, we try to do something new,” Beauter says. “This year it’s edible flowers.”

He points to where nasturtium and bachelor’s button, anise hyssop and marigold will grow. He has a patch for borage, or starflower: “It tastes like cucumbers or a light melon,” he says. “And it also makes pretty plates, so that’s a plus.”

Sunflowers will be planted throughout the garden in a dual role: They attract bees to pollinate the crops, and they look nice, Bradshaw says. The flowers are in addition to last season’s melons and garlic, among other vegetables; the future may hold chickens.

Herbs and tomatoes were the plan. Each year, the plan grew. Today everything in the garden starts from seeds, some from kitchen waste. Sunflowers add beauty and bring bees, who pollinate the crops.

“When we started, the idea was just to grow some herbs and tomatoes,” he says. “We determined that to have the garden be useful, we had to increase production substantially. We’re not organic per se, but we go natural as much as possible. I start everything from seeds.”

Such restaurant waste as eggshells, coffee grounds and vegetable matter goes into the compost pile. Certain roots and cuttings left over after food prep are planted, and will grow into new plants, Bradshaw says, saving even the cost of seeds.

“We created the full circle: We grow food, serve it, bring the waste back here to grow more food,” Beauter adds.

Two cities away, chef Sydney Meers puts 50 years of gardening experience to work in the Port Norfolk area of Portsmouth, growing fruit, vegetables, herbs and flowers for his restaurant, Stove.

“In America, they call them farmettes, but in France they’re called le petite ferme, and that’s what I call it,” Meers says.

It’s economy sized, maximized by streetside flower boxes and new raised beds. “You can get a lot more plants in a raised bed than in rows,” Meers says. “After this season, if it looks like raised beds are the thing, I might do the whole garden that way.”

Sydney Meers, above, grew up gardening. 

He leads the way past strawberries, blueberries, fennel and rosemary, oregano and basil in a bewilderment of varieties, past figs and sage and sorrel, lavender and more. Honeybees zip in and out of a hive by the fence; the hanging flower baskets are just for them.

From the window of his adjacent house, Meers’ parrots shout “Hi!” as he walks past. He grows a row of peanuts for them. One of his cats, black-and-white Bailey Creme, strops around his ankles and patrols the garden for moles and voles.

“I take my stereo out there and I play music, classical for me but the bees were mellowed by opera,” he says. “I think it soothes the bees a little bit. Music makes vibrations and they ‘hear’ it that way. They love it. And even if they don’t, I certainly do.”

Meers has gardened since childhood, when first his grandparents, then his parents, owned a cafe in Senatobia, Mississippi. “We were in a small town. We got all our fresh produce from farmers,” he says.

A photo of the cafe hangs on the wall of the restroom in Stove. The whole family would pitch in to harvest and preserve the corn, peas, squash, tomatoes and other produce they grew. “We would very rarely buy a can of something to eat,” he says. “I think my grandmother’s spirit is out in my garden. That’s where I get my gardening mentality.”

A major focus is the 250 hot pepper plants he grows each year, key ingredients for his bottled Cowboy Syd’s D-lish and Not-Hot sauces. In 2016 D-lish was a finalist in the Good Food Awards, a prestigious artisanal food competition; the same year, Meers was a James Beard semifinalist.

Meers grows produce, herbs and flowers for Stove with the help of honeybees, music and a patrolling cat. 

He points out peppers left from last season, still in the garden. “Some are light green, light red, dark green, dark red. Some are wrinkled like a raisin and those are full of sugar. It develops layers of flavor. They’re delicious.”

Meers’ garden is quirky, decorated with yard art and corralled in spots by old tires used as planters for trees and shrubs. They protect the roots from cold, he says. “And it reminds me of Mississippi.”

He leads a tasting tour of the herb beds, offering a delectable variety of sorrel, oregano and basil. They are all rooted in soil. Meers is not a fan of hydroponics. He gestures at his April garden.

“My soil’s doin’ its mojo,” he says. “The plants have got to have that kiss of the sun and that dirt.”

Kevin Jamison goes big. He and his partners cultivate eight acres of vegetables at their New Earth Farm in Pungo, keep five acres in pasture for chickens, and plan to add thousands of fruit trees.

The fresh food is served at Commune in Virginia Beach and at the new location in Norfolk, where the menu on any given day reflects what was just harvested.

“We’re a biological farm,” he says, organic in all but the legal definition. “Twenty years ago, people heard the word ‘organic’ and thought, ‘Oh, that’s just a bunch of hippie stuff.’ But chemical farming, it’s harmful to us to eat it. It’s harmful to the environment. Look at the Chesapeake Bay. (Synthetic) nitrogen fertilizer from farms runs off and feeds algae blooms that kill shellfish and fish. It’s just kind of crazy.”

New Earth relies on compost from restaurant waste and on its own biochar – a kind of charcoal made by heating but not burning plant material – to balance the soil and maintain its health. Biochar is also used on a farm in Haiti operated by Community Development International, a nonprofit co-founded by Jamison.

He made his first trip to Haiti as a high school student. His graduate degree in international law and food security was earned in Rome, where his landlady introduced him to the flavors of organic, homegrown foods. Later, he gave up a desk job to work directly with the soil and to promote education, sustainability and conscientious eating through the restaurant, the farm and the nonprofit.

“The values we promote at the restaurant and on the farm are not just local issues,” he says. “Carbon dioxide, recycling, composting – they’re bigger issues for all of us. We’re trying to show people that circle rather than telling them about health problems and environmental problems. They start thinking, ‘It doesn’t just taste better, it’s better for me and better for the environment.’ ”

Kevin Jamison’s New Earth Farm supplies his Commune restaurants.

New Earth tries to grow enough plants to keep its bees well fed, and away from nearby properties that use pesticides. The chicken houses are on wheels so they can be moved from pasture to pasture. The seeds are started in hoop houses, then transplanted outdoors after frost danger is past.

In 2017, New Earth will be farming year-round, he says, and planned to open in September a market on site to sell foods, plants, tools and gardening items to the public.

“I can’t wait,” he says. “Everything this year is the culmination of work and dreams.”

At New Earth, compost and homemade biochar nourish crops and soil, and bees are kept away from nearby lands that use pesticides. Early on, Jamison saved a friendly chicken from a cull. She’s called Girlfriend.

In Suffolk, Bradshaw gardens on a smaller scale, buying locally grown produce from farmers when he can, and growing what he can’t buy, such as petite squash. It’s not cost-effective for most farmers to harvest squash before the crop matures, because they sell by the pound, he says, so the chefs grow their own.

Likewise, melons. The garden will be planted in Snow Leopard, a variety of white melon that the chefs haven’t been able to buy locally.

“It is a lot of work but it’s also pretty rewarding to plant a seed and later walk into the restaurant with a 10-pound melon,” Bradshaw says.

Much of the heavy equipment used to turn the garden is borrowed or second-hand, like the disc he found rusting in the woods. But a lot of the labor is done by hand. Bradshaw parks the tractor, while Beauter transplants seedlings from the tray to the ground, which, in April, is bare, brown soil.

“Six weeks from now,” Bradshaw says, “this place will be alive.”


BlueSky Biochar Organic Garden

1 October, 2017
 

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Biodiversity for a Livable Climate

1 October, 2017
 

Potuck 6:00-7:00 p.m. followed by discussion 7:00-9:00 p.m. at Helen Snively’s place near Central Square.  

Biodiversity for a Livable Climate has a profound, even gripping, story to tell.  It is a story people want to hear because it is positive, hopeful, inspirational!  The story’s overriding message is that humans can turn the climate crisis around if we join together, roll up our sleeves, and get right to ecological restoration at the local, regional, and continental scales. 

Frédérique Apffel-Marglin is founder of the Sachamama Center for Biocultural Regeneration (
http://www.centrosachamama.org/sachamamain/), and is the author of five books, the editor or co-editor of an additional eight books and the author of more than fifty five articles and book chapters. Her interests cover ritual, gender, political ecology, critiques of development, science studies and Andean-Amazonian shamanism. Her areas of specialization are South Asia and the Amazonian Andes. You may view an excellent video on her work here (https://www.youtube.com/watch?v=daItQZs0HSQ).

Frédérique will discuss  her latest book, co-authored with Robert Tindall and David Shearer, and a forward by Ian Baker. Sacred Soil: Biochar and the Regeneration of the Earth.  She considers the Earth as a whole system, and presents a fascinating description of how utilizing the biochar, the recently rediscovered sacred soil of the pre-Columbian peoples of the Amazon rainforest, can cut our dependency on petrochemicals, restore the health of our soils, remove carbon from our overheating atmosphere, and restore the planet to pre-industrial levels of atmospheric carbon by 2050.

====

Biodiversity for a LIvable Climate is a small non-profit so a $10 donation is requested.

Helen Snively’s house is about halfway between Central Square and Inman Square. Take the MBTA red line to Central Square, exit the station walking down Massachusetts Avenue in the direction of Harvard Square (away from Boston). Walk five blocks and make a right on Lee Street, then walk two blocks past Harvard Street and Broadway. Cross Broadway onto Fayette Street (which will be in front of you), walk down Fayette and make your first left onto Fayette Park (a private way). If you’re coming by car, there’s ample free parking on Sundays in Cambridge.  

The address is One Fayette Park, immediately past the first driveway on the right. It’s a green 4-family. Come up on the first porch and look for a number 1 on the door. If you have questions please post to this Meetup, or call Helen at[masked]-1326.

See our website at http://www.bio4climate.org

We get together to learn, discuss, understand–to spread hope for a livable climate in the decades to come by sharing knowledge of regenerative practices that work to sequester carbon and cool the local and global climate. Our members are gardeners, growers, ecologists, climate activists, scientists, writers, researchers, innovators, local foodies, policy makers, educators, leaders, futurists, organizers, parents, Slow Money and Slow Food types, holistic thinkers, anyone curious about how biology shapes the earth. Among other activities, we have a monthly potluck dinner and lively presentations and discussions, usually on Sunday evenings. Topics are varied, but all center around how ecological and regenerative resource management can reverse the effects of global warming; by shifting our thinking to see the world in wholes we can collaborate and take action now–let’s all be part of the worldwide mobilization of the biosphere to regenerate and restore damaged ecosystems and reverse global warming.


Biochar Field Tour Open House

2 October, 2017
 

Time: August 11, 2017 all day
Location: Bayfield
Street: Bayfield
City/Town: ON
Phone: 519-888-4567 Ext 37552
Event Type: field, tour
Organized By: OntAG Admin
Latest Activity: Jul 5

Export to Outlook or iCal (.ics)

Learn how biochar influences soil health

For further information & registration contact:
Maren Oelbermann ;uwsoilbiochar@gmail.com

Registration deadline: July 20, 2017

Limited space available. Register soon!

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Organic Biochar

2 October, 2017
 

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Biochar comparison essay

2 October, 2017
 

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Literature review pyrolysis

3 October, 2017
 

A normative review of the literature describing the products, mechanisms and rates of carbohydrate pyrolysis is presented. The role of a complex sequence of competing Methods for Producing Biochar and Advanced Biofuels in Washington State Part 1: Literature Review of Pyrolysis Reactors Ecology Publication Pyrolysis of waste tyres: A review. Article Literature Review The main gases produced from the pyrolysis of waste tyres are H2, CHAPTER 4 BIOMASS PYROLYSIS: A REVIEW OF THE LITERATURE PART 2-LIGNOCELLULOSE PYROLYSIS Michael Jerry Antal, Jr. This paper is dedicated to the memory of Fred The literature on biomass pyrolysis regarding kinetics, models (single particle and reactor), and experimental results is reviewed from an engineering point of view.Mark Fuchs and the other research partners in Washington see that review the literature on pyrolysis in Washington State. They review the Title: Methods for Producing Biochar and Advanced Biofuels in Washington StatePart 1: Literature Review of Pyrolysis ReactorsPyrolysis of Waste Plastics into Fuels pressure and reflux rate have also been investigated in the literature review. From the literature review, the pyrolysis Review of fast pyrolysis of biomass and product upgrading. This paper provides an updated review on fast pyrolysis of biomass for literature review and Modelling of Pyrolysis

Producing Biochar and Advanced Biofuels

in Wood: A Review S. Sinha, A. Jhalani, would be on the modelling of wood pyrolysis, and relevant literature on related topics isOutline •Value and Supply Chain of Waste –What’s recycled and what’s not? •Pyrolysis Process –How it works for plastics? •Literature ReviewThe Formation of Polyaromatic Hydrocarbons and Dioxins During Pyrolysis: A Review of the Literature with Descriptions of Biomass Composition, Fast Pyrolysis Technical, economical and climate related aspects of biochar production technologies: A literature reviewA bibliographic review of 195 references is presented outlining the history of the research into the mechanisms of cellulose pyrolysis. Topics discussed are: initial Valuable information is provided by papers on pyrolysis processes, Economical, and Climate-Related Aspects of Biochar Production Technologies: A Literature Review.ii PREFACE This literature review was suggested by the Pyrolysis Network (PyNe) and the National Renewable Energy Laboratory (NREL), as a necessary means to collect Search terms: Semantic Search . Literature review of pyrolysis and combustion products of selected utility materials: Interim report.Previous article in Early View: A Critical Review on Hemicellulose Pyrolysis . Browse Early View Articles Citing literature ; Funding Information On Nov 1, 2005 Sascha R. A. Kersten (and others) published: Biomass Pyrolysis in a Fluidized Bed Reactor. Part 1: Literature Review and Model SimulationsScribd is the world’s largest social reading and publishing site.Methods for Producing Biochar and Advanced Biofuels in Producing Biochar and Advanced Biofuels in Washington State. Literature Review of Pyrolysis Reactors.CHAPTER 2 LITERATURE REVIEW The whole world is facing the crises of depletion of fossil fuels as well as the problem of or ethanol, pyrolysis, th1s technology. Bridgewater in a review analyze the state of the art of different Pyrolysis technologies[17]. It 1s reported that considering the oil prices of 1988 Moreover, the literature data structured by the authors is related to a wide range of operating JRJones – Mechanisms of Pyrolysis – Melb 29 Sept 2011.pptx Author:l y ‘ PREFACE This literature review was suggested by the Pyrolysis Activity of the lEA Bioenergy Task Xlll, International Energy Agency, as a necessary means to FW: Fourth report in the pyrolysis series is complete. Part 4: Literature Review of Sustainability Issues, Business Models, and Financial AnalysesLiterature Review of Pyrolysis Reactors. Literature Review of Biomass Supply Chain and Processing Technologies (From Field to Pyrolysis Reactor).Journal of Analytical and Applied Pyrolysis. Review. The pyrolysis of peat: A comprehensive review of the literature.Previous article in Early View: A Critical Review on Hemicellulose Pyrolysis . Browse Early View Articles Citing literature ; Funding Information

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Worldwide Biochar Market Rising demand 2022: Pacific Pyrolysis Pty, Vega Biofuels, Full Circle …

3 October, 2017
 

Oct 3, 2017 12:55 PM ET

A new research document with title ‘Global Biochar Market Professional Survey Report 2017 covering detailed analysis, Competitive landscape, forecast and strategies. The study covers geographic analysis that includes regions like North America, China, Europe, Southeast Asia, Japan, India and important players/vendors such as Pacific Pyrolysis Pty Ltd, Vega Biofuels, Inc., Full Circle Biochar, Genesis Industries LLC, Diacarbonn Energy Inc.The report will help user gain market insights, future trends and growth prospects for forecast period of 2017-22

This report studies Biochar in Global market, especially in North America, China, Europe, Southeast Asia, Japan and India, with production, revenue, consumption, import and export in these regions, from 2012 to 2016, and forecast to 2022.

 

Request a sample report @ https://www.htfmarketreport.com/sample-report/722618-global-biochar-market-7

This report focuses on top manufacturers in global market, with production, price, revenue and market share for each manufacturer, covering

Pacific Pyrolysis Pty Ltd

Vega Biofuels, Inc.

Full Circle Biochar

Genesis Industries LLC

Diacarbonn Energy Inc.

Earth Systems Bioenergy

Agri-Tech Producers, LLC

Pacific Biochar

Phoenix Energy

Biochar Supreme LLC

CharGrow, LLC

Cool Planet Energy Systems

By types, the market can be split into

Woody Biomass

Agricultural Waste

Animal Manure

Others

By Application, the market can be split into

Electricity Generation

Agriculture

Forestry

Others

By Regions, this report covers (we can add the regions/countries as you want)

North America

China

Europe

Southeast Asia

Japan

India

 

Get customization & check discount for report @ https://www.htfmarketreport.com/request-discount/722618-global-biochar-market-7

 

Table of Contents

There are 12 Chapters to deeply display the Biochar Market.

Chapter 1, to describe Definition, Specifications and Classification of Biochar, Applications of Biochar, Market Segment by Regions;

Chapter 2, to analyse the Manufacturing Cost Structure, Raw Material and Suppliers, Manufacturing Process, Industry Chain Structure;

Chapter 3, to display the Technical Data and Manufacturing Plants Analysis of Biochar, Capacity and Commercial Production Date, Manufacturing Plants Distribution, R&D Status and Technology Source, Raw Materials Sources Analysis;

Chapter 4, to show the Overall Market Analysis, Capacity Analysis (Company Segment), Sales Analysis (Company Segment), Sales Price Analysis (Company Segment);

Chapter 5 and 6, to show the Regional Market Analysis, Biochar Segment Market Analysis (by Type);

Chapter 7 and 8, to analyse the Biochar Segment Market Analysis (by Application) Major Manufacturers Analysis of Biochar;

Chapter 9, Market Trend Analysis, Regional Market Trend, Market Trend (Product Type), Market Trend (Application);

Buy this report @ https://www.htfmarketreport.com/buy-now?format=1&report=722618

Chapter 10, Regional Marketing Type Analysis, International Trade Type Analysis, Supply Chain Analysis;

Chapter 11, to analyse the Consumers Analysis of Biochar;

Chapter 12, to describe Biochar Research Findings and Conclusion, Appendix, methodology and data source;

View Detailed Table of Content @ https://www.htfmarketreport.com/reports/722618-global-biochar-market-7

 

Thanks for reading this article, you can also get individual chapter wise section or region wise report version like North America, Europe or Asia.

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Competitive Landscape of Global Biochar Market Illuminated by new report

3 October, 2017
 

Please Enter Your Text in the Search Box!

Geographically, this report is segmented into several key Regions, with production, consumption, revenue (million USD), market share and growth rate of Biochar in these regions, from 2012 to 2022 (forecast), covering

North America
Europe
China
Japan
Southeast Asia
India

Request Sample for this report @ https://www.alltakemarketresearch.com/enquiry/request_sample/10530

Global Biochar market competition by top manufacturers, with production, price, revenue (value) and market share for each manufacturer; the top players including

Pacific Pyrolysis Pty Ltd
Vega Biofuels, Inc.
Full Circle Biochar
Genesis Industries LLC
Diacarbonn Energy Inc.
Earth Systems Bioenergy
Agri-Tech Producers, LLC
Pacific Biochar
Phoenix Energy
Biochar Supreme LLC
CharGrow, LLC
Cool Planet Energy Systems

On the basis of product, this report displays the production, revenue, price, market share and growth rate of each type, primarily split into

Woody Biomass
Agricultural Waste
Animal Manure
Others

Obtain Report Details @ https://www.alltakemarketresearch.com/report-detail/Biochar-Market

On the basis on the end users/applications, this report focuses on the status and outlook for major applications/end users, consumption (sales), market share and growth rate of Biochar for each application, including

Electricity Generation
Agriculture
Forestry
Others

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Almond Market Regions

3 October, 2017
 

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Yield-scaled N2O emissions were effectively reduced by biochar amendment of sandy loam soil …

3 October, 2017
 

Publication date: December 2017
Source:Atmospheric Environment, Volume 170
Author(s): Yuhui Niu, Zengming Chen, Christoph Müller, Monhammad M. Zaman, Donggill Kim, Hongyan Yu, Weixin Ding
It is increasingly recognized that the addition of biochar to soil has potential to mitigate climate change and increase soil fertility by enhancing carbon (C) storage. However, the effect of biochar on yield and nitrous oxide (N2O) emissions from upland fields remains unclear. In this study, a one-year field experiment was conducted in an area of calcareous fluvo-aquic soil to assess and quantify the effect of maize straw biochar in reducing N2O loss during 2014–2015 in the North China Plain. Eight treatments were designed as follows: no nitrogen (N) fertilizer (control, CK); biochar application at rates of 3 (B3), 6 (B6) and 12 (B12) t ha−1; chemical fertilizer (NPK) application at 200 kg N ha−1 (F); and fertilizer plus biochar application at rates of 3 (FB3), 6 (FB6) and 12 (FB12) t ha−1. Crop yield, N2O fluxes, soil mineral N concentrations, and soil auxiliary parameters were measured following the application of treatments during each season. During the maize growing season, N2O emission was 0.57 kg N2O-N ha−1 under CK treatment, and increased to 0.88, 0.93 and 1.10 kg N2O-N ha−1 under B3, B6 and B12, respectively. In contrast, N2O emissions were significantly reduced by 31.4–39.9% (P < 0.05) under FB treatments compared with F, and the N2O emission factor of the applied N was reduced from 1.36% under F to 0.71–0.85% under FB. There was also a significant interaction effect of fertilizer and biochar on N2O emissions (P < 0.01). During the wheat growing season, biochar had no effect on N2O emissions regardless of the fertilizer regime. Biochar application did not affect maize yield; however, a significant increase in wheat yield of 16.6–25.9% (P < 0.05) was observed without N fertilization. Nevertheless, a reduction in wheat yield was measured at a biochar rate of 12 t ha−1 with fertilization. Overall, under maize cropping, N2O emissions per unit yield of grain, biomass, grain N and biomass N (yield-scaled N2O emissions) were significantly reduced by 32.4–39.9% under FB compared with F treatment, regardless of the biochar application rate. Biochar did not affect yield-scaled N2O emissions in wheat. Decreased soil bulk density with biochar is suggested to reduce the denitrification potential and N2O emissions; while increased retention capacity of fertilizer N in biochar-added soil decreased wheat growth and yield. These findings suggest that N fertilization plus biochar application at 3 t ha−1 is a practical strategy for reducing yield-scaled N2O emissions from maize fields in the North China Plain.

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Global Biochar Market to Reach a Valuation of US $14751.8 Thousand by 2025

3 October, 2017
 

Albany, NY — (SBWIRE) — 10/03/2017 — Biochar is a charcoal which is obtained by heating different waste products such as wood waste, agricultural waste, animal manure and forest waste. These waste products are used as feedstock for production of biochar. Biochar is produced mainly through modern pyrolysis processes in which direct thermal decomposition of biomass waste in the absence of oxygen, resulting into biochar along with bio-oil and syngas. Biochar obtained is rich in carbon content and is fine grained residue. Biochar can also be obtained using different technologies such as gasification, microwave pyrolysis, etc.

The report estimates and forecasts the biochar market on the global, regional, and country levels. The study provides forecast between 2017 and 2025 based on volume (Tons) and revenue (US$ Thousand) with 2016 as the base year. The report comprises an exhaustive value chain analysis for each of the product segments. It provides a comprehensive view of the market. Value chain analysis also offers detailed information about value addition at each stage.

Click to get sample PDF with TOC: https://www.researchmoz.us/enquiry.php?type=S&repid=1320918

The study includes drivers and restraints for the biochar market along with their impact on demand during the forecast period. The study also provides key market indicators affecting the growth of the market. The report analyzes opportunities in the biochar market on the global and regional level. Drivers, restraints, and opportunities mentioned in the report are justified through quantitative and qualitative data. These have been verified through primary and secondary resources. Furthermore, the report analyzes substitute analysis of biochar and global average price trend analysis.

Global Biochar Market: Key Research Aspects

The report includes Porter’s Five Forces Model to determine the degree of competition in the biochar market. It comprises qualitative write-up on market attractiveness analysis, wherein end-users and countries have been analyzed based on attractiveness for each region. Growth rate, market size, raw material availability, profit margin, impact strength, technology, competition, and other factors (such as environmental and legal) have been evaluated in order to derive the general attractiveness of the market. The report comprises price trend analysis for biochar between 2017 and 2025.

Secondary research sources that were typically referred to include, but were not limited to company websites, financial reports, annual reports, investor presentations, broker reports, and SEC filings. Other sources such as internal and external proprietary databases, statistical databases and market reports, news articles, national government documents, and webcasts specific to companies operating in the market have also been referred for the report.

In-depth interviews and discussions with wide range of key opinion leaders and industry participants were conducted to compile this research report. Primary research represents the bulk of research efforts, supplemented by extensive secondary research. Key players’ product literature, annual reports, press releases, and relevant documents were reviewed for competitive analysis and market understanding. This helped in validating and strengthening secondary research findings. Primary research further helped in developing the analysis team’s expertise and market understanding.

Global Biochar Market: Segmentation

The study provides comprehensive view of the biochar market by dividing it into feedstock, application and geography. The biochar market has been segmented into woody biomass, agricultural waste, animal manure, and others. Application segments electricity generation, agriculture, forestry and others have been analyzed based on historic, present, and future trends.

Regional segmentation includes the current and forecast demand for biochar in North America, Europe, Asia Pacific, Latin America, and Middle East & Africa (MEA). Additionally, the report comprises country-level analysis in terms of volume and revenue for end-user segments. Key countries such as the U.S., France, Germany, Italy, the U.K., China, India, Japan, South Africa, Mexico, and Brazil have been included in the study. Market segmentation includes demand for individual end-users in all the regions and countries.

Enquiry: https://www.researchmoz.us/enquiry.php?type=E&repid=1320918

Global Biochar Market: Competitive Landscape

The report covers detailed competitive outlook that includes market share and profiles of key players operating in the global market. Major players profiled in the report Pacific Pyrolysis Pty Ltd, Vega Biofuels, Inc., Full Circle Biochar, Genesis Industries LLC, Diacarbonn Energy Inc., Earth Systems Bioenergy, Agri-Tech Producers, LLC , Pacific Biochar, Phoenix Energy, Biochar Supreme LLC, CharGrow, LLC, Cool Planet Energy Systems. Company profiles include attributes such as company overview, number of employees, brand overview, key competitors, business overview, business strategies, recent/key developments, acquisitions, and financial overview (wherever applicable).

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ResearchMoz is the world’s fastest growing collection of market research reports worldwide. Our database is composed of current market studies from over 100 featured publishers worldwide. Our market research databases integrate statistics with analysis from global, regional, country and company perspectives. ResearchMoz’s service portfolio also includes value-added services such as market research customization, competitive landscaping, and in-depth surveys, delivered by a team of experienced Research Coordinators.

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Biochar Market forecast

3 October, 2017
 

Oct 3, 2017 12:55 PM ET Worldwide Biochar Market Rising demand 2022: Pacific Pyrolysis Pty, Vega Biofuels, Full Circle Biochar iCrowdNewswire – Oct 3, 2017 – A new research document with title ‘Global Biochar Market Professional Survey Report 2017 covering detailed analysis, Competitive landscape, forecast and strategies. The study covers geographic analysis that includes regions like North America, China, Europe, Southeast Asia, Japan, India and important players/vendors such as Pacific Pyrolysis Pty Ltd, Vega Biofuels, Inc., Full Circle Biochar,. (more…)

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Global Biochar Market Research Report

3 October, 2017
 

Home


Ground Up

4 October, 2017
 

This is where biochar is today in agriculture. Its a better mousetrap in the midst of a huge rodent epidemic and still, most people can’t even buy any.

Over and over again during the workshop we heard that “farmers are conservative,” “nobody is going to pay for something that takes years to show its worth,” and “unless you spend the time to make it, you won’t even be able to get any.” This is where biochar is today in agriculture. Its a better mousetrap in the midst of a huge rodent epidemic and still, most people can’t even buy any.   

Because we are busy with the workshop we can’t easy cut out the time to pen a blog, so we taped (feebly, using a collection of devices such as phones and voice recorders) a segment of one talk we gave during the week.  Enjoy.   

http://www.thepermaculturepodcast.com/wp-content/uploads/2016/09/Episode1633.mp3 Click here to download the.

http://www.thepermaculturepodcast.com/wp-content/uploads/2016/09/Episode1634.mp3 Click here to download the.

“Patterns of regenerative thinking augur regenerative.

“The Green Wall Vertical Garden Bottle.


Quebec pyrolysis plant to produce bio-coal products

4 October, 2017
 

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The $6.6 million plant is being constructed in the town of Saint-Tite, Que.

The company’s website states that it specalizes in converting wood to bio-carbon products for the BBQ cooking industry, biochar in agriculture, and for water purification applications and air through activated charcoal.

Xylo-Carbone also operates a cutting and sorting site for logs on its 15-hectare production site.

According to a news release, the project is being re-engineered using the company’s new Maple Leaf Charcoal technology to produce vegetable charcoal (renewable forest biomass); a new type of furnace with improved mass efficiency and stability with respect to the carbonization process.

The project is expected to create approximately 20 jobs.



Biochar research paper

4 October, 2017
 

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Making Biochar Ver 1 01

4 October, 2017
 

Now that your students have made a TLUD from two 15 oz cans and have also made a safety can, it is time to make some biochar. But first: 1. Safety precautions; 2. A list of materials you will need. It’s very important to take fire safety measures when you work with TLUDs. Even a small TLUD can generate temperatures in excess of 1,000 degrees F. For your safety, and the safety of your students, read the following steps before operating your TLUD. Safety Precautions: Step 1: Keep students at a safe distance from operating TLUDS. No running around. Step 2: Wear close-fitting clothing – no scarves or skirts. Long hair must be tied back and up. Step 3: Make sure nothing flammable is nearby. Be sure to check under the TLUD as well. Step 4: Have a fire extinguisher, a bucket of water, and a First Aid kit handy at all times. Step 5: Make sure there’s no dry vegetation nearby. Step 6: Always operate the TLUD in its safety/windshield can. Step 7: ALWAYS use insulated gloves and long handled pliers when handling TLUDs that are operating, or have recently been operated. Expect them to be VERY hot. Step 8: Stand to one side when quenching the biochar. It can produce puffs of live steam. Live steam is dangerous. Step 9: Before leaving or ending the session, quench in water the contents of ALL TLUDS that have been in operation Make sure there are no hot coals stuck in any of the TLUDs. Step 10: Never operate a TLUD indoors – unless it is under a hood with excellent draft for capturing all of the stack gases. Operating TLUDs outdoors offers good protection from the stack gases that will be emitted by the TLUD.

Ver. 1.01

Please proceed with caution and at your own risk.

Page 1

dry wood pellets per TLUD to be used. 7. please look up "How to Teach a Child to Stop. Teach everyone how to put out a clothing fire . Bucket of water. 2. get everyone away and call 911.stop. Insulated gloves -. 4. Timer. 3. Long handled pliers -. This will give you about 60 grams of wood pellets. 9. filled with 250 ml of cold water . Completed TLUD and its safety/windshield can. drop and roll ( If in doubt. 1/2 cup measure.must be available for anyone quenching biochar. 14.one per TLUD 15. Tablespoon measure.Making Biochar in a 15 oz TLUD Tips & Warnings * * Keep anything flammable away from fire and heat. get all of your students to safety before attempting to put the fire out yourself. Ver.01 Please proceed with caution and at your own risk. This may be measured out and put in baggies in advance. 8. Fire extinguisher. 1. 6.must be available for the operator of a TLUD. Small wooden matches. If the fire is spreading too quickly. Drop and Roll) * In the event of a fire. Materials you will need 1. 11. Large sieve to separate biochar from the quenching water. 13. 1/2 cup of clean. Page 2 . Pan to quench biochar in. Jar or can to make starter in. 5. 12. 91% rubbing alcohol for the pyrolysis starter. 10. 8 oz funnel and strainer to make starter with.

1. Note book to record the results -. in this case wood pellets. and rinsed biochar. quenched.ideally one per TLUD to be operated. This will involve a number of steps as illustrated below. Measure out the half cup of biomass. that will be pyrolyzed: Ver.01 Please proceed with caution and at your own risk. 17.Making Biochar in a 15 oz TLUD 16. Page 3 . then you are ready to prepare your TLUD for operation. either out doors or under a good ventilating hood. and have established emergency procedures and exit routes. First Aid Kit 18. Getting Started Once you have prepared a fire safe working area. Containers for the finished.

Making Biochar in a 15 oz TLUD Next. Use this period to place the remainder of the pellets into the main part of the TLUD. Wait 4 . Cover the pellets with 91% rubbing alcohol. from this half cup.01 Please proceed with caution and at your own risk. as shown on the next page: Ver. Dump this heaping table spoon full of pellets in the jar or can you have for making starter. collect a heaping table spoonful of pellets to use as the pyrolysis starter. 1.time this for repeatability. Page 4 .5 minutes -.

1.01 Please proceed with caution and at your own risk. When the time is up. Page 5 .Making Biochar in a 15 oz TLUD The main part of the TLUD is the can with the primary and secondary air holes in it. strain the alcohol back into its bottle. See next page: Ver.

Any alcohol that runs down into the pellets in the TLUD will allow the pyrolysis to start below the top layer. It is important not to spill it all over the place. Page 6 . shake the pellets in the strainer to get rid of any excess unabsorbed alcohol. The goal is to only start the pyrolysis on the top of the biomass in the TLUD.Making Biochar in a 15 oz TLUD Before you do anything else. This will create a major fire hazard that must be cleaned up BEFORE any thing else is done. 1. Ver. This should be avoid if at all possible.01 Please proceed with caution and at your own risk. replace the cap on the alcohol bottle. Next.

you are ready to add the starter and start the pyrolysis. water. Page 7 . 1. fresh. See the photos on the next page. do it now. Note: if you have not already prepared a pan in which to quench the biochar. If all of the safety items are in place. and the TLUD is in a fire safe location.Making Biochar in a 15 oz TLUD Shaking excess alcohol from the wood pellet starter. Ver.01 Please proceed with caution and at your own risk. Fill the pan with about 250 ml of cold.

and starter are in place.only if necessary. biomass. 2. Now all cans. Then balance the the top can. If the two cans do not lock together snugly.Making Biochar in a 15 oz TLUD To put the TLUD into operation: 1. Lastly. on top of the bottom can. Page 8 . Ver. the draft enhancer made from the second 15 oz can. center the two cans in the safety/wind/shield can.the can with the primary and secondary air holes in it. Do not stir it in. Add the alcohol soaked and well drained wood pellets to the top of the biomass already in the TLUD .01 Please proceed with caution and at your own risk. than place the basic TLUD in the safety can first. Place the draft can on top of the basic TLUD can -. You may use a long nail or screw driver to spread the starter pellets out evenly -. 1.the can with the primary and secondary air holes.

The alcohol soaked starter pellets will light immediately. Ver. You will feel the heat. before starting the pyrolysis.01 Please proceed with caution and at your own risk. Warning: The initial flames will be quite blue and may be hard to see. You can test this by carefully placing a hand well above the top of the cans. Students should not start pyrolysis without permission. Start your timer NOW so you can time the run. Now that the student is good to go. it is time to start the pyrolysis. Page 9 . They are there and they are hot.Making Biochar in a 15 oz TLUD At this point. do a last safety check to make sure all is well and safe to go. This is a one match process. Simply drop the match down the draft can and into the basic TLUD can below. 1. The teacher or instructor should give this approval BEFORE the students start the pyrolysis. even if you do not see the flames.

and flame height.Making Biochar in a 15 oz TLUD The pyrolysis in a TLUD with 10 primary air holes of 9/64ths [3. the two can TLUD will smoke a bit. colors. you will have to remove the two TLUD cans from the safety/windshield. See the photos below. Does the flame come out of the bottom can? The top can? Can you see any soot being ejected from the system? When the last of the flames of the burning pyrolytic gases self extinguishes. But make notes about the smoking. Ver. Place it to one side. 1. Watch the flame patterns.01 Please proceed with caution and at your own risk. Remove the top can. Does it stop smoking in less than 60 seconds? 120 seconds? Waiting two minutes before you quench the biochar is enough. give or take a minute. Let it smoke. from the bottom can it is balanced on. Page 10 . Did it diminish quickly? Was it gone in two minutes or less? Before you can quench the biochar. out of the way to cool down.6 mm] size will run for about 16 1/2 minutes. You should use insulated gloves and pliers to do this safely.

Page 11 . Ver.01 Please proceed with caution and at your own risk.Making Biochar in a 15 oz TLUD Remove the bottom can from the windshield / safety can in the same manner. 1. You are now ready to quench your biochar in cold water and then evaluate it. It has some very hot charcoal in it so be VERY careful.

Ver. Do a careful visual check of the TLUD to make sure it is completely empty. Make sure ALL of the hot pieces of biochar get into the pot and that none are left in the TLUD. 1. You may have to tap the bottom of the TLUD quite hard to jar any stuck bits free.01 Please proceed with caution and at your own risk. Page 12 . use the pliers to slowly pour the very hot biochar into the 250 ml of cold water in the quenching pot.Making Biochar in a 15 oz TLUD Quenching the Biochar Wearing insulated gloves.

Discard the floaters. 1.Stir the pot with the biochar in it. There should be very few “floaters” in the water. this is a very good indicator that there is not too much residual “junk” left in the biochar. Test #1: Smoke -. Test #2: Floaters -. Ver.If the smoke at the end of pyrolysis last 60 seconds or less. Absorption is good and is the desired result.01 Please proceed with caution and at your own risk. Use a nail or a stick or a screw driver etc. Evaluating your biochar The students have already done the first of seven evaluations.Making Biochar in a 15 oz TLUD Set the bottom can back inside the windshield/safety can to cool off. Charcoal that floats is not as absorptive as biochar the sinks in very short order. It will be hot for a few minutes. this is also a good sign. If the smoke greatly diminished in two minutes or less. Page 13 .

creosote. Test #5: Smell -. Milky indicates the presence of too much ash. Test # 6: Hugh McLaughlin!s “no soap test”.01 Please proceed with caution and at your own risk. 1. If it smells of old fires. Page 14 . your harvest of biochar is less than optimal. Put it right up to your nose and smell it. If this is the case. But they are telling the student that not all may not be well. Ver. It may also suggest that the pH of your biochar is not neutral. This is an indication of incomplete and uneven pyrolysis. It should have no oder. Take some of the freshly water quenched biochar from the quenching pot. Discard the brown bits.Scoop out as much biochar as you can from the cool quenching water.Look for “brown bits” of incompletely charred pellets. then it is dirty and you may well want to discard it. it may be pleasantly warm.Making Biochar in a 15 oz TLUD Test #3: Brown bits -. Test #4: Clear water -. The no soap test photos are by Lars Torres. This suggests that the pyrolysis was too hot and too fast and some of the charcoal was actually burned down to ash.Is the quenching water clear or milky? Clear is good.

01 Please proceed with caution and at your own risk. and it is oily. you may want to discard the biochar.Making Biochar in a 15 oz TLUD “Grind” the biochar into your skin as it you meant it to stay there forever. 1. then it is not oily. This is good. Now rinse your hands off in the clean quenching water. Does the biochar come off with no soap? If yes. If not. Page 15 . Ver.

If it is not.Use a pH testing kit to see if the biochar is pH neutral or close to it. Page 16 .01 Please proceed with caution and at your own risk. it may be best to discard it and try again. you will probably want to discard it. if is certainly good enough to use in the next section of this kit. 1. Saving your biochar for the next steps: The last two step are to separate the biochar from the quenching water and to rinse the student!s biochar to remove carbon dust and ash: Ver.Making Biochar in a 15 oz TLUD Test #7: pH -. If your biochar passes all 7 tests. If it fails more than three tests.

Drying in the sun is an even better idea. Dry it in a flat pan.Making Biochar in a 15 oz TLUD The cleaned and well drained biochar should be stored in baggies for use in the next section of this kit. You will be looking for two numbers: Ver. Be sure to re-hydrate the biochar before you add it to compost or soil. Optional Activity: Measuring your biochar harvest Before you can measure your biochar harvest.01 Please proceed with caution and at your own risk. Biochar that has been quenched in water may take longer than an hour in a 350 degree oven to return to a moisture content of less than 2%. Stir from time to time. Page 17 . 1. you must first dry it in an oven.

plus or minus a minute or two. Such wood chips can. Sun dried biomass of less than 20% moisture content will be easier to use than fresh green wood chips.01 Please proceed with caution and at your own risk. gum tree seed pods. The volume of biochar as compared to the volume of the biomass you started with. It does not require "champagne! fuels such as stick wood or fossil fuels. be made to work if you vary the primary and secondary air supplies appropriately.but nothing with paint or preservatives. uncharred bits. Ver. But the first run will very likely have a plastic smell for at least the first part of the run. floaters. Note 3: Once the students have had success with their TLUDs. Pressure treated wood is to be avoided. If it is more than 20%. you will quite quickly get a handle on the optimal run time. it is too slow and cool and the biochar is apt to have residues. 1. however. cherry pits. Note 2: Do not use too much quenching water as it will make it hard to see the milky state of the water if there is a lot of ash mixed in with the biochar. lined with plastic which will burn off. If it is too long. With experience with the types and sizes of cans your students use.20% of the weight of the biomass you started with. like food cans. If it is too short. Ask the students to figure out what percent of the carbon in the biomass they were able to harvest. seeds such as acorns. and moisture contents work. and a bad smell etc. If you weigh the dried biochar. Notes Note 1: The length of time between starting the pyrolysis and the last flame self extinguishing.Making Biochar in a 15 oz TLUD 1. for example. One of the benefits of pyrolysis is that it can use "light beer! fuels. if will probably be in the range of 12% . Old paint cans should NEVER be used. can be informative. Professional biochar reactors. It is normal for the pyrolysis process to reduce the starting volume by 50%. Page 18 . This results in an inefficient biochar harvest. not yard clippings contaminated with fertilizers and pesticides. Note 5: Never use a can that has had chemicals in it. sizes. These will burn off after one or two runs.best if dried and pelletized. Brand new paint cans can be purchased and used if desired. the run time for a given amount of biomass. consider challenging them to use locally sourced biomass such as hay. form factors. can work well even with simple chicken litter -. there is apt to be very clean biochar but perhaps too much ash. 2. or twigs and small bits of wood -. It will be a good challenge to see how different biomass types. They are. Note 4: Cans that have had food in them are apt to be lined with plastics of one sort or another. it is likely that either the biochar is not fully dry or that it may be contaminated with tars etc.

1. The TLUDS are not to be used at home without parental approval and supervision. Note 7: Have some fun! Try cooking marshmallows over the TLUD.01 Please proceed with caution and at your own risk. if consistent and repeatable results are desired.Making Biochar in a 15 oz TLUD Note 6: Biomass of uniform form factor. Note 9: You have seen that the process of making biochar also produces thermal energy. Perhaps sections of hot dogs? Note 8: Consider having the students take their TLUDs home with them. Smaller form factors are easier to handle and come out of the TLUD pretty much ready to be used with no further crushing etc. size and moisture content is best for pyrolysis. Page 19 . What uses for this thermal energy can your students think of? The next lesson in this kit is: School Biochar Experiment Lesson Plan Contributors: National Aeronautics and Space Administration US Biochar Initiative International Biochar Initiative Biochar Northeast Ver.

1-s2.0-S1364032117308468-mainJakarta Capital Environmental Blog, Crown Eco ManagementGreen Shop Case Study 40kWNiemela - Computational Fluid Dynamics Modeling of Pulverized Biomass Combustion Using Optimized Reactivity ParametersRecycling of Biomass Ashes 2011refinery+RFQ (3)Production of Bio-Coal and Activated Carbon From BiomassWaste Plastic to FuelComputational Scheme Guided Design of a Hybrid Mild GasifierInvestigations on Oxy-hydrogen Gas and Producer Gas, As Alternative Fuels, On the Performance of Twin Cylinder Diesel EnginePoster PST2016 Rev04Anaerobic Pyrolysis Characteristics of Municipal142194-378229-1-SMtmpCFB1.tmpBIOMASS Factsheet208-1132-1-PB.pdfKim Template 10Catalytic Conversion of Lignocellulosic Biomass to Fine Chemicals and Fuels Biomass Gasification Technology Utilization 2002Investments Unit Industrial Wood Pellets Brazil Biomass Wood PelletsBiomass Utilization as a(1)AssinmentBiomass Multi-Year Program PlanBiomass Briquettes vs Fossil Fuels7345590 bConsidering Byproduct Generation From Biofuel Product2010 Symposium Biofuel Hemp Libro Biomass and Biofuels From Microalgae SPRINGERBriquetting Plant- Renewable source of energy12-097tmpF153tmp578A.tmpFarmers Truck v. Magnetek Incorporate, 360 F.3d 1206, 10th Cir. (2004)HOUSE HEARING, 111TH CONGRESS - BIOMASS FOR THERMAL ENERGY AND ELECTRICITYtmp5C3tmpDA8BAs 60695.9.1-2006 Fire Hazard Testing Surface Spread of Flame - General GuidanceEnhancing the Performance & Emission for the Blend of Diesel & Pyrolysis oil of TyreA Review study for Enhancing the Performance & Emission for the Blend   of Diesel & Pyrolysis oil of Tyre   Emission Analysis of Diesel Engine for Tyre Pyrolysis Oil & Diesel BlendStufa Pirolitica - (Presentazione)Making Biochar Ver 1 01Zen Shiatsu e Macrobiotica Da PubblicareJacques de Langre, Il Libro Del Do InSpeciale PrimitivismoACqua Diamante134195355 Masunaga Shizuto Manuale Di DiagnosiMaking Biochar Ver 1 01Ecologia Della Nutrizione Valutazione Dell’Impatto Ambientale Di Diverse Tipologie Di AlimentazionePirolisi12_Economia_50Ukulele TabsMANUALE di naginataTo TaleStudi e Ricerche SullAscorbato Di Potassio e Ribosio51903311 La Dieta Macrobiotica Di Georges Ohsawa23779659 Occhio1 Anatomia Ottica Geometric Anaturopata34274572 Contemporary Macrobiotics (1)la decrescita feliceAtlante Dei Funghilo sciamanisco e le tecniche dell'estasi W Mancini Il Grande Libro Del Trekking

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New Study On Global Biomass Microwave Pyrolysis (Biochar and Wood Vinegar)

4 October, 2017
 

This new market research report forecasts on Biomass Microwave Pyrolysis (Biochar and Wood Vinegar) Market providing complete market figures, consisting market size and estimation by Biomass Microwave Pyrolysis (Biochar and Wood Vinegar) Market application and products depending upon geographical location for the forecasting period   2012 to 2022.

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Unam student encourages peers to focus on research

4 October, 2017
 

Pinehas Nakaziko

Windhoek-A Master of Science (Environmental Science) student at the University of Namibia (Unam) is encouraging young people to focus on research in their various disciplines.

Nahas Enkono says young people must play their part and meet the government half way in contributing to their country’s economy by doing research in different fields.

“Currently Namibia is faced with issues such as climate change and food insecurity, hence the need for the young ones to do their part. Areas such as soil sciences studies, agriculture and broad environmental issues are hotspot topics of concern to Namibia,” Enkono observed.

“This includes addressing issues of land degradation, loss of agricultural output, water access and availability, as well as changes in vegetation density.”

He adds that these areas are of great importance for the country and need to be seriously looked at, because they are in line with Fifth National Development Plan (NDP5) and the Strategic Development Goals (SDGs) for Namibia.
“Addressing issues of food security, sustainability development and also improving soil quality are very important parameters for a developing country like Namibia, as these research output could benefit the country greatly.”
“Therefore young people should think about contributing significantly to meeting the set of the SDGs for Namibia, and align their careers within these SDGs and NDP5.”

Enkono expanded on this by saying that the idea of encouraging young people to do research is to have a knowledge-based young society, whose ideas speak to policy and influence implementation — from low- to upper-level.
“It also makes more sense that a lot of funding should be allocated to students looking to pursue their studies on addressing issues of climate change and adaptation.”

Enkono has done research in the area of water quality and availability, soil quality assessments (looking at the potential of biochar for soil fertility), common pool natural resource management and other environmental issues. 


Biochar

4 October, 2017
 

Podobni video posnetki:


Does Biochar Help Your Grass Grow – Lawncare – Wakefield Biochar

5 October, 2017
 

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Trends in Fine Biochar Powder market: size, production, prospect

5 October, 2017
 

Fine Biochar Powder Market Report provides complete information about manufacturers, suppliers, distributors, traders, customers, investors and major types as well as applications. Fine Biochar Powder Market is segmented based on type, application, and region. The Fine Biochar Powder market report provides an in-depth overview of Product Specification, product type and production analysis considering major factors such as Revenue, Cost, Gross and Gross Margin.

On the basis of product, this report displays the sales market analysis of Fine Biochar Powder market followed by Sales Price and Sales Revenue with reference to regions. Further the Fine Biochar Powder market reports gives in depth analysis of major manufactures by analysing Production and Sales Market Comparison.

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Split by application, this report focuses on consumption, market share and growth rate of Fine Biochar Powder in each application, can be divided into:

Fine Biochar Powder market research report is a professional and in-depth study on the current state of the Fine Biochar Powder market. In this Report Various definitions and classification of the industry, applications of the industry, manufacturers, Sourcing Strategy and chain structure are given. It also presents the company profile, product specifications, production value, Contact Information of manufacturer and market shares for company.

Next part of the Fine Biochar Powder market analysis report talks about the manufacturing process. The process is analysed thoroughly with respect three points, viz. raw material and equipment suppliers, various manufacturing associated costs (material cost, labour cost, etc.) and the actual process.

The study is a source of reliable data on:

The Fine Biochar Powder market reports gives complete insights to industry chain analysis which elaborates analysis of upstream and downstream industry that includes Raw Material and Suppliers, Equipment and Suppliers. This report also provides information about capacity, production, Capacity Utilization Rate, Price, Revenue, Cost, Gross Margin etc.

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Granular Biochar Market Trends and Opportunities by Product Type

5 October, 2017
 

 

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Arsenic removal by perilla leaf biochar in aqueous solutions and groundwater

5 October, 2017
 

 

 

 

 


Biochar Market share, 2014-2020 : Industry Will Reach 585.0 million by 2020

5 October, 2017
 

Deerfield Beach, FL — (SBWIRE) — 10/05/2017 — According to the report, the global biochar market was valued at approximately USD 260.0 million in 2014 and is expected to reach approximately USD 585.0 million by 2020, growing at a CAGR of around 14.5% between 2015 and 2020. In terms of volume, global biochar market stood at 100-kilotons in 2014. Zion Market Research has published a new report titled “Biochar (Pyrolysis, Gasification, Hydrothermal and Others Technology) Market for Agriculture, Water & Waste Water Treatment, and Other Applications: Global Industry Perspective, Comprehensive Analysis, and Forecast, 2014 – 2020”

Biochar is a charred carbon charcoal-like product derived from biomass that can enhance soils quality, sequester carbon. Biochar has been produced under conditions that optimize properties useful in agriculture, such as low amounts of residual resins and high surface area per unit of volume. There are some thermochemical technologies such as pyrolysis, gasification and hydrothermal conversion to produce biochar. Biochar is mainly used to improve soil quality by increasing soil pH as well as its moisture holding capacity. Biochar also has a tendency to filter and retain nutrients from percolating soil water.

Request For Free Sample Report: https://goo.gl/d48LsR

The major driving factors for biochar market are increasing demand from the agricultural sector, increasing environmental awareness and growing demand for organic farming in North America and Europe. Biochar is also growing in popularity among livestock farmers, which is expected to drive the market growth over the forecast period. Furthermore, government support for gasification projects is another key factor expected to propel biochar market growth over the forecast period. However, lack of consumer awareness and technology uncertainties is expected to limit the growth of this industry.

Request For Free Price Quotation: http://www.marketresearchstore.com/requestquote?reportid=43492

The biochar market is segmented on the basis of technology such as pyrolysis, gasification, hydrothermal and others. The pyrolysis technology is leading segment with a significant share of the total market in 2014. This growth can be attributed to high yield, along with high carbon content and stability. Gasification technology does not create stable biochar which can be used in agriculture for soil amendment. However, this technology segment expected to decline its market share over the forecast period.

Know more before buying this report: https://goo.gl/h49dVQ

On the basis of application, the biochar market has been segmented into agriculture, water & wastewater treatment and others. Agriculture was a major application segment of biochar market and accounted over 80% share of the global demand in 2014 and is expected to continue its dominance in the global market over the forecast period. Water & wastewater treatment is another major application segment and expected to exhibit significant growth on account of growing hygiene awareness and effective water infrastructure.

Browse the full report at: http://www.marketresearchstore.com/report/biochar-market-z43492

The global biochar market was dominated by North America with over 50% market share in total volume consumption in 2014. North America followed by Europe and Asia Pacific region. Europe was the leading regional market accounted for over 24% share of the global volume in 2014. Asia Pacific is the third largest market accounted for the significant share in total volume consumption and is expected to witness moderate growth over the forecast period.

Some of the key industry players including Diacarbon Energy Inc, Vega Biofuels, Inc, Agri-Tech Producers. Llc, Hawaii Biochar Products. LLC, Biochar Products, Inc., Cool Planet Energy Systems Inc, Black carbon A/S, Green Charcoal International, Earth Systems Pty Ltd, and Genesis.

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Global Biochar Market 2017 by Key Players: Agri-Tech Producers, BioChar Products, Hawaii …

5 October, 2017
 

This report on global Biochar market precisely studies the various aspects of Biochar industry.At Forefront the report proffers prudent insights into the trends in Biochar market along with the market dimensions and forecast for the duration 2016 to 2022.Along with this,research study on Biochar market also integrates detailed analysis of various market segments on the basis of product type, applications and geography.

Further this report incorporates both quantitative as well as qualitative data sets which include market framework, executive summary for the global Biochar market.The report also includes key players profile description, details on fiscal & accounting , business tactics and fresh developments in global Biochar Market.Tools for competition mapping are also inculcated in the report as an assitance to the end users.

Do Inquiry Before Purchasing Report at : http://emarkets.eu/global-biochar-market/#inquiry

Illustratation of each segment is precisely done in further section of research study.Global Biochar Market report is primarily segmentized into three major segments i.e product type, applications and geographical/region.Key Players/Manufacturers in the Biochar Market are also enlisted in report.

Key Dominant players enlisted in Biochar market:

BioChar Products Agri-Tech Producers Hawaii Biochar Pacific Biochar The Biochar Company (TBC) Cool Planet Energy Systems Walking Point ec6Grow RAUCH INTERNATIONAL Diacarbon Energy Vega Biofuels

Request for Sample Pages Of Report at : http://emarkets.eu/global-biochar-market/#requestForSample

The global Biochar Market is studied for five major geographic regions namely: North America, Europe, Asia-Pacific, South America, Middle East and Africa.Market dimensions and prognosis for each regional and country-level market are added in the report for the examined periods.

1.North America

*United States

*Canada

*Mexico

2.Asia-Pacific

*China

*Japan

*Southeast Asia

*India

*Korea

3.Europe

*Germany

*UK

*France

*Italy

*Russia etc.

4.South America

*Brazil

*Chile

*Peru

*Argentina

5.Middle East and Africa

*Egypt

*South Africa

*Saudi Arabia

Further the global Biochar Market is segmented into Product Types, applications

 

Agriculture Energy Production Environmental Protection Others

Overall, this report will guide Biochar manufacturers, system integrators and related business partners to identify key investment regions and define their strategies.


EMEA (Europe, Middle East and Africa)

5 October, 2017
 

Published On : Oct 2017

Category : Machinery

No. of Pages : 116 pages

The market for Emea europe middle east and africa granular biochar market report 2017 has been undergoing a transitional phase over the recent past. The continual advancements in technologies and the swift increase in infrastructural development projects have influenced the demand for Emea europe middle east and africa granular biochar market report 2017 substantially over the past few years. The swift rise in urbanization and the significant increase in the disposable income of people are likely to maintain the demand pace of Emea europe middle east and africa granular biochar market report 2017 in the near future. The augmenting interest of investors, government funding, and the rising trend of automation are also projected to reflect positively on this market in the years to come.

The research study examines the Emea europe middle east and africa granular biochar market report 2017 on the basis of a number of criteria, such as the product type, application, and its geographical presence. The whole supply chain of this market has been explained with statistical details with a special emphasis on various upstream and downstream components. The current trends pertaining to the demand, supply, and sales of Emea europe middle east and africa granular biochar market report 2017, together with the recent developments have been given here to provide an exhaustive picture of this market.

In this research report, the prominent trends, driving factors, restraints, opportunities, and challenges have been taken into consideration in order to identify the market’s future. It also discusses the production cost structure of Emea europe middle east and africa granular biochar market report 2017. As per the research study, raw material and equipment are two major components of the Emea europe middle east and africa granular biochar market report 2017 manufacturing process. Here, researchers have studied the costs of raw materials and equipment with a special mention to their suppliers. Furthermore, the labor and other operational costs experienced in the production of Emea europe middle east and africa granular biochar market report 2017 have also been discussed at length in this market report.

The report presents an estimation of the overall market size in terms of value (US$) and in volume (kilo tons) and talks about the key segments and the geographical subdivisions of the Emea europe middle east and africa granular biochar market report 2017 in details. It presents in-depth information on the development trends and the policies and regulations, concerning Emea europe middle east and africa granular biochar market report 2017, implemented in each of the geographical segments. The predominant applications of the Emea europe middle east and africa granular biochar market report 2017 have also been talked about at length in this research report.

Further, the research study analyzes the regulatory framework of the Emea europe middle east and africa granular biochar market report 2017, offering stakeholders a better understanding of the various policies, rules and regulations, and future projects, which are expected to influence numerous proceedings in this market.  It also collects in-depth information gained through extensive primary and secondary research methods, which has been assessed with the help of several effective analytical tools. Based on the data attained from such systematic research, the research report presents near-accurate estimates for the market players as well as the readers. Readers will also gain significantly from the references and case studies given in the research study.

The research report also presents a thorough assessment of the competitive landscape of the Emea europe middle east and africa granular biochar market report 2017 by reviewing the company profiles of the leading players functioning in this market. The market hierarchy has also been identified in this study by analyzing the current developments and future prospects of these players.

On Tuesday, it was reported that Apple became the very first company that reached a market worth of US$700 billion. This was the outcome of surging share prices and the upbeat news with regard to a soon-to-be launched smartwatch that will be introduced in the market. The share prices increased by 1.9% thereby, ensuring that the company surpassed the UTS$700 billion mark and reached a market value…

Sony’s latest gaming console, the PlayStation 4, has already sold almost 10 million units since its launch in late 2013. The company’s sales executives however, do not know why the console is selling so much. The executives fear that the above-average sales trajectory could spell an early burn and result in large losses in the later stages. Shuhei Yoshida, Sony Worldwide Studios’…

China is currently eager to expand its industry of semiconductors and likely continue its lookout for acquisitions in the United States despite the growing tensions between Washington and Beijing over security and technology matters, as per an industry observer. According to the director of global innovation and policy based at the Information Technology & Innovation Foundation, Washington the…


Global Biochar 2017 Market Analysis Report

5 October, 2017
 

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Yen Bai request basis biochar production shut

5 October, 2017
 

UBND huyện Yên Bình, tỉnh Yên Bái vừa có văn bản số 1233/UBND-TNMT yêu cầu tạm dừng hoạt động sản xuất đối với cơ sở sản xuất than sinh học của bà Lê Thị Thơm tại thôn 7, xã Thịnh Hưng, huyện Yên Bình để khắc phục tình trạng ô nhiễm môi trường.

Before, in early May 9/2017, phóng viên VOV thường trú khu vực Tây Bắc có bài viết “Yên Bái: Người dân tố xưởng than sinh học gây ô nhiễm”,  phản ánh việc gần 20 hộ dân phải đi cầu cứu khắp nơi, đề nghị giải quyết vấn đề ô nhiễm môi trường từ cơ sở sản xuất than sinh học của bà Lê Thị Thơm (tại thôn 7, xã Thịnh Hưng, Yen Binh district) gây ảnh hưởng lớn đến đời sống của người dân…

Cơ sở sản xuất than sinh học của bà Thơm khi còn hoạt động

Then, Phòng Tài nguyên và môi trường huyện Yên Bình yêu cầu bà Lê Thị Thơm chủ xưởng than phải thực hiện đầy đủ các biện pháp bảo vệ môi trường theo kế hoạch bảo vệ môi trường đã được xác nhận, thực hiện việc quan trắc môi trường theo quy định.

Thực hiện các yêu cầu, bà Thơm đã hợp đồng với Trung tâm quan trắc môi trường tỉnh Yên Bái và tiến hành quan trắc. Come now 25/9/2017, bà Thơm đã nộp kết quả này cho Phòng Tài nguyên và Môi trường huyện Yên Bình.

Theo Văn bản số 1233/UBND-TNMT của UBND huyện Yên Bình, kết quả quan trắc cho thấy, có một số thông số đã vượt quy chuẩn cho phép của Bộ Tài nguyên và Môi trường như: Khí CO, bụi tổng, bụi lơ lửng và tiếng ồn.

Căn cứ vào kết quả phân tích trên, UBND huyện Yên Bình yêu cầu bà Lê Thị Thơm tạm dừng hoạt động đối với cơ sở sản xuất than sinh học tại thôn 7, xã Thịnh Hưng, huyện Yên Bình để khắc phục sự cố môi trường theo quy định./.

Tuấn Xuân/VOV-Tây Bắc

No comments.


Community Invited to CoCo San Sustainable Farm Event In Martinez

6 October, 2017
 

MARTINEZ, CA – From CoCo San Sustainable Farm: From 11 a.m. to 2 p.m. Saturday, Oct. 14, CoCo San Sustainable Farm, a project of AgLantis (501c-3), will have a special event to teach the community what they can do in their own backyards to help reverse global warming.

Bethallyn Black, M.A. our amazing Master Gardener, Organic farmer for life, Diablo Valley College faculty member will inspire you with methods you can help REVERSE Global Warming.

Bahman Sheikh, Ph.D. is our special guest speaker will talk about how recycled water can help with the global warming problem. Dr. Sheikh is one of the nation’s leading experts on recycled water use, especially for agriculture. Dr. Sheikh has over 30 years of experience in master planning and design of water resources projects, specializing in water reclamation, reuse, and recycling. The focus of much of his work has been on public health protection and safety from the microbiological and chemical quality of water used for irrigation and other applications.

Michael R. McGill, P.E., Board Member, Central Contra Costa Sanitary District will also be talking about “The Future of Water” and the debate about “One Water” — the movement to unify control of different types of water and to use and reuse every drop of fresh water.

Alex Brendel, former DVC student in Horticulture and Soil Science will talk about “Biochar: Sequestering Carbon in Soil.” Alex started organic gardening at age 8 and has manufactured biochar and will explain the amazing benefits.

Mike Milani, P.E., President of Milani & Associates will be there with the FARM SITE PLAN to show you what is happening next! You can tour our 15-acre urban farm and find out what the heck we are doing and how you can participate!

We will have Cover Crop Seed and Bee Garden Seed for you to buy at the low price.

Cindy Gershen and her brilliant culinary students from MDUSD will be there with food for us!

Supervisor Karen Mitchoff will be there at 11 a.m. and it’s her birthday! Other VIPs: Martinez Mayor, Robb Schroder; Concord Vice-Mayor Edi Birsan; Concord Councilwoman Carlyn Obringer; Concord City Councilman Ron Leone; CCCCD Board Member Greg Enholm; MDUSD Vice-President Cheryl Hansen; West County Wastewater Board Member Sherry Stanley and Rev. Will McGarvey plan to attend and many more!

Tickets Available at Eventbrite: https://www.eventbrite.com/e/drawdown-how-to-reverse-global-warming-tickets-37149340678

Sponsors: PG&E is a major sponsor of this event and STUDENTS can come for free! Let us know if you need a scholarship and are not a student. Thank you to Joyce Ligon and Dave Towers of Land Home Financial Services, Inc.; Dr. Judith M. Davis; Leigh Johnson, Trial Whisperer; and Far West Portapottys for being event sponsors!

About AgLantis
AgLantis is a California non-profit public benefit corporation, 501c-3. The work being done on the CoCo San Sustainable Farm has a quadruple bottom line – social Equity, Educational, Environmental and Economic. This farm is a model for healthy, fresh, affordable, local fresh produce; education for the community; environmental protection; and green job creation. The CoCo San Sustainable Farm is located on Central Contra Costa Sanitary District buffer land (5500 Imhoff Drive, Martinez, CA) and uses recycled water that otherwise would be discharged into Suisan Bay.

Image via Pixabay

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Science Fair Order

6 October, 2017
 

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Global Biochar Industry 2021 Overview, in-Depth Analysis, Forecasts, Applications, Shares & Insights

6 October, 2017
 

A new research document with title ‘Global Biochar Market by Manufacturers, Regions, Type and Application, Forecast to 2021covering detailed analysis, Competitive landscape, forecast and strategies. The study covers geographic analysis that includes country like United States, EU, Japan, China, India and Southeast Asia and important players/vendors such as Diacarbon Energy, Agri-Tech Producers, Biochar Now, Carbon Gold, Kina, The Biochar Company etc.The report will help user gain market insights, future trends and growth prospects for forecast period of 2016-2022

Request a sample report @ https://www.htfmarketreport.com/sample-report/94114-global-biochar-market-1

“Biochar is the solid product of pyrolysis, designed to be used for environmental management. IBI defines biochar as: A solid material obtained from thermochemical conversion of biomass in an oxygen-limited environment. Biochar is charcoal used as a soil amendment. Like most charcoal, biochar is made from biomass via pyrolysis. Biochar can increase soil fertility of acidic soils (low pH soils), increase agricultural productivity, and provide protection against some foliar and soil-borne diseases. Furthermore, biochar reduces pressure on forests. Biochar is a stable solid, rich in carbon, and can endure in soil for thousands of years.

Scope of the Report This report focuses on the Biochar in Global market, especially in North America, Europe and Asia-Pacific, South America, Middle East and Africa. This report categorizes the market based on manufacturers, regions, type and application.

Market Segment by Manufacturers, this report covers : Diacarbon Energy, Agri-Tech Producers, Biochar Now, Carbon Gold, Kina, The Biochar Company, Swiss Biochar GmbH, ElementC6 , BioChar Products, BlackCarbon, Cool Planet, Carbon Terra, Pacific Biochar, Vega Biofuels, Liaoning Jinhefu Group, Hubei Jinri Ecology-Energy, Nanjing Qinfeng Crop-straw Technology, Seek Bio-Technology (Shanghai)

Buy this report @ https://www.htfmarketreport.com/buy-now?format=1&report=94114

Market Segment by Regions, regional analysis covers

North America (USA, Canada and Mexico)

Europe (Germany, France, UK, Russia and Italy)

Asia-Pacific (China, Japan, Korea, India and Southeast Asia)

South America, Middle East and Africa

Market Segment by Type, covers

Wood Source Biochar

Corn Stove Source Biochar

Rice Stove Source Biochar

Wheat Stove Source Biochar

Other Stove Source Biochar

Market Segment by Applications, can be divided into

Soil Conditioner

Fertilizer

Others

Get customization & check discount for report @ https://www.htfmarketreport.com/request-discount/94114-global-biochar-market-1

There are 13 Chapters to deeply display the global Biochar market.

Chapter 1, to describe Biochar Introduction, product scope, market overview, market opportunities, market risk, market driving force;

Chapter 2, to analyze the top manufacturers of Biochar, with sales, revenue, and price of Biochar, in 2015 and 2016;

Chapter 3, to display the competitive situation among the top manufacturers, with sales, revenue and market share in 2015 and 2016;

Chapter 4, to show the global market by regions, with sales, revenue and market share of Biochar, for each region, from 2011 to 2016;

Chapter 5, 6, 7 and 8, to analyze the key regions, with sales, revenue and market share by key countries in these regions;

Chapter 9 and 10, to show the market by type and application, with sales market share and growth rate by type, application, from 2011 to 2016;

Chapter 11, Biochar market forecast, by regions, type and application, with sales and revenue, from 2016 to 2021;

Chapter 12 and 13, to describe Biochar sales channel, distributors, traders, dealers, appendix and data source.

View Detailed Table of Content @ https://www.htfmarketreport.com/reports/94114-global-biochar-market-1

Thanks for reading this article, you can also get individual chapter wise section or region wise report version like North America, Europe or Asia.

Contact Us:
CRAIG FRANCIS (PR & Marketing Manager)
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Biochar.info

8 October, 2017
 

A quick breakdown about the Biochar.info website can be found further down:

The following domains are, too, hosted on 104.18.51.189:

Strangely, no meta keywords are used by the website Biochar.info.

Based on A and B block, the following IP adresses are similar to 104.18.51.189

The following domain extensions are available for the domain name, with a total of 730 variations available:

As mentioned by Alexa on their official page, the Alexa rank or rating is calculated using a number of different parameters, such as daily average of unique visitors as well as pageviews over the last three months. The more unique visitors and pageviews, the higher the overall rank.

Visitors frequently mistype biochar.info.
Here is a list of most common misspellings:

Established in 2006, the technology company Quantcast provides audience measurements and an opportunity for advertising in real time. In addition to that, the American company ensures public access to all sorts of website-related data (traffic and demographic) for millions of websites, as well as in-depth user insights to digital bloggers and publishers enrolled in Quantcast’s Quantified Publisher Program. The processing capability provided by Quantcast is impressive – over 800 thousand transactions per second, with, as claimed by the company, accurate audience calculation for over 100 million online destinations. In 2013, Quantcast was widely believed to be among the top five of world’s largest data processing companies. Holding offices in London, Dublin, New York and Chicago, the main headquarters of Quantcast is in San Francisco, CA.

Other lists the domain biochar.info appears in are:


Bio char research paper

8 October, 2017
 

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Turning an environmental problem into an opportunity: potential use of biochar derived from a …

8 October, 2017
 

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Turning an environmental problem into an opportunity: potential use of biochar derived from a …

8 October, 2017
 

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Is Biochar the Answer to All Your Gardening Problems?

8 October, 2017
 


Learn Organic Gardening at GrowingYourGreens

Published on Oct 8, 2017
John from http://www.growingyourgreens.com/ visits the home of Michael Wittman, CEO of Blue Sky Biochar in Southern California to get all your biochar questions answered.

In this episode, John will take you on a tour of Michael’s backyard to show you how he is growing food, reusing natures resources, making his own biochar, cultivating the best compost, adding fertility to his soil, and much, much more.

You will learn about many ways how Michael is leaving a lighter footprint on the planet and making the world a better place by reusing instead of recycling.

You will discover if biochar is all that is cracked up to be, why it doesn’t work, how you can best use biochar to create better compost, the specific mechanisms on how biochar actually works to improve soil tilth, what is wood vinegar which is a biochar by-product, and much, much more.

Jump to the following parts of the episode:
02:42 Backyard tour Starts
04:20 Benefits of a Wood Chipper & Rain Water Collection
07:23 Growing Food in a Satelite Dish
09:23 How to apply Biochar to Your Lawn
10:20 Simple Biochar Kiln
11:20 BioCharlie — Easy Way to Make Biochar with any Fire
12:24 Cook You Food and Make Biochar at the Same Time
13:30 Best Fuel for Making Biochar
14:32 Best Way to Add Biochar to Your Garden
17:06 How to Make Compost Fast
18:18 How to Make Your Compost Better with Biochar
21:16 Growing Fruit Trees in Containers
24:22 Interview with Michael Starts
24:51 How did you get interested in Biochar?
25:36 What is the main benefit of BioChar?
27:37 Can someone buy Charcoal briquettes for Biochar?
28:16 Does the feedstock used to make biochar important?
29:13 How is Biochar made in a Commercial Process?
32:40 What is the easiest and safest make biochar at home?
34:20 How Biochar Can help sandy or clay soil become better?
36:09 Why does biochar not work sometimes?
41:45 What is Wood Vinegar and Why should be people use it?
45:12 Can someone buy apple cider vinegar instead of wood vinegar?
46:32 What is your website?
47:50 How you can get 20% off and a free sample of wood vinegar?
48:48 Any final Comments or thoughts for my viewers?

After watching this episode, you will learn some of the benefits of biochar, some ways to use biochar you haven’t learned about before, the benefits of wood vinegar and how to use it, how to get a 20% discount on biochar and wood vinegar and much, much more.

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http://www.blueskybiochar.com/

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Download Biochar for Environmental Management: Science, Technology and Implementation …

8 October, 2017
 

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Global Granular Biochar Sales Market Report 2017

9 October, 2017
 

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Shane's Pacific BioChar, Black Mix #6

9 October, 2017
 

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biochar making machine

9 October, 2017
 

There are several options for the best charcoal making machine open to anyone looking to make charcoal for their own needs. These will all save a little money, will enable you to go farther with your own business, and will give you the liberty to help you become own items. However, there are several differences between the two and understanding these differences is important for total and finished happiness by a buyer. Thankfully, we are going to be exceeding these options on this page.

One thing you will want to search for is definitely the fuel being used. Dependant upon what is cheapest in your town, you will need to pick a fuel that is an easy task to get. Any machine that makes charcoal but isn’t planning to utilize an easy to get fuel will be useless for your needs. It is because you have to get a steady supply of fuel to essentially ensure the best results. Thankfully there are a huge number of options available and many machines make use of a variety of fuels, making your career even easier.

The next matter to take into account is when much might be processed at once. Should you be in the beginning stages, a reduced processing level will be acceptable. However, if you are searching to generate things on the large, small-scale machines are simply going to frustrate you. This information is readily available and must be straightforward too.

Additionally it is important to remember that bamboo will have some other volume than coconut shells, so keeping that information in mind helps when you examine just how much a particular machine can process. Always check the specifics prior to making a commitment to really find the machine. Here: http://bestonpyrolysisplant.com/straw-charcoal-machine/.

The next thing you will need to check will be the opinions of others in the same business. Inferior products hurt everyone in the business, so a lot of people will likely be willing to at the very least inform you when something is horrible. Additionally, testimonials will show you when something is particularly good. Keeping all of this in mind will ensure that you get a piece of equipment that is within the top few for its class.

Finally, you should make certain that the company itself has a good reputation. If you require replacement parts or would like to expand at a later time, you should make certain you are inclined with the same company. Thankfully the trustworthiness of a lot of companies is simple to find just by looking them up. Don’t be so worried in the event you don’t find any information, if your clients are bad you will see a ton of bad reviews, but sometimes people don’t review good companies in order to save time.

Overall considering just a couple of small things is likely to make easier to determine which model in the marketplace may be the best biochar making machine available for your needs. However, the answer is typically going to be the same because the top suppliers get to the top for producing good machines.


Rice husk charcoal (biochar) for fertilizer

9 October, 2017
 

Rice husk charcoal (biochar) for fertilizer

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Global wood vinegar market is expected to reach USD 6.34 million by 2021 according to new …

10 October, 2017
 

– Advertising –

The Global Wood Vinegar Market is worth USD million in 4.52016 and estimated to grow at a CAGR of7.1 %, to reach USD 6.34 million by 2021. The global Wood Vinegar market is developing at an exceptionally quick pace.

Browse Full Report at www.marketdataforecast.com/market-…egar-market-3468/

Wood vinegar is a natural substance which is extracted from wood and is also known as pyroligneous acid or liquid smoke. Wood vinegar is also a biodegradable and non-toxic material that is used in animal feeds and agriculture, and considered as a good option for organic farming.

– Advertising –

Wood vinegar aids in stimulating plant & fruit growth, reduce odor, enriches soil fertility, prevents pests, weeds, roots from rotting and enhance seeds for germination. Wood vinegar is produced via the process of carbonization, in which the wood is heated in an airless container.

Report: www.marketdataforecast.com/market-…68/request-sample

The significant drivers for Wood Vinegar are improved crop yield, increasing government initiative for bio-based products, increasing base of end-use industries, stringent environment regulations. surge in use of wood vinegar the applications in agricultural practices such as increased disease resistance in plants, improved seed germination, soil enrichment and root growth stimulation.

Limited manufacturers for the production of wood vinegar and stringent policies limit this industry.

Report: www.marketdataforecast.com/market-…/request-discount

Market Segmentation                                              

Pyrolysis                      

Application                 

Geographically, the Wood Vinegar market is segmented into North America, Europe, Asia-Pacific, Latin America and Middle East Asia. Asia Pacific is estimated to constitute the largest share in this market, because of the consumer acceptance for wood vinegar as an essential natural farming input.

Canada Renewable Bioenergy Corp., Nettenergy BV (Netherlands), ACE (Singapore) Pte Ltd, TAGROW CO., LTD. (China), and Byron Biochar (Australia).

are the leaders in the global Wood Vinegar market.

 

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Rice Husk Carbonization Furnace Can Turn Waste Into Fuel

10 October, 2017
 

Agricultural waste is an important problem in the present day. One of several chief offenders is rice husks. Rice is probably the most grown crops worldwide, and it is a staple in the diet of vast amounts of people. However, growing rice creates lots of waste. Rice husks are definitely the leftover parts of rice plants once the edible rice has been harvested. Every year, a lot of rice husk play a role in landfills as there is no other use because of it. However, having a rice husk carbonization furnace, this is not the case!

Carbonization is among one of many techniques accustomed to turn biomass, that is leftover products from plants or any other living things, into biochar. Biochar can be a revolutionary substance that burns similarly to coal, but with a small fraction of the pollution. Biochar solves two problems: one, burning coal for energy creates excessive pollution, and 2, agricultural waste contributing a great deal of mass to landfills.

Biomass like rice husks is generally considered worthless since it is too complex to interrupt down quickly. While many biomass could be rotted and turned to compost, allowing more plants to be grown with all the nutrients present in the biomass, a great deal of agricultural byproducts take too much time to biodegrade to get efficient for this function. Rice husks, coconut shells, corn husks, nut shells, and other hard, sturdy plant matter is simply too hard to degrade, and should be thrown out.

This is where a rice husk carbonization furnace can be purchased in. By heating the types of materials and breaking them down without burning them, the furnace is able to reduce the biomass into usable, burnable matter called biochar. Biochar, when packed together into briquettes, burns slightly less efficiently than coal, but is a lot cheaper to obtain and produces substantially less pollution.

One method of energy generation which is growing in popularity is called coburning. Coburning means the procedure of burning two or more different varieties of materials together, allowing one to have the advantages of both materials. In such a case, coburning means burning biochar and coal as well. Coal burns efficiently, and will help to maintain the furnace hot, while biochar provides considerably more energy per dollar and has less environmental impact. By burning both materials as well, energy might be produced which is cheaper, more potent, and cleaner than ordinary coal burning.

Biochar may also be used as fertilizer. It could be spread in soil to boost the nutrition for future crops, by returning the minerals the plants utilized to produce the biomass from the beginning. By carbonizing agricultural waste, the useful energy and materials in rice husks and also other refuse can be unlocked to be used.

A carbonization furnace enables you to turn what used to be trash into a valuable way to obtain energy or fertilizer. This product, called biochar, can be burned as well as coal for cleaner and much more efficient energy, or spread in soil to aid plants grow better. Learn more here.

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Characteristics of Municipal Solid Waste Biochar: Its Potential to be Used in Environmental …

10 October, 2017
 

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10 October, 2017
 

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Bio char research paper

10 October, 2017
 

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It’s a project that almost never got off the ground. But today construction is booming in one Tulsa suburb.

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Biochar Market Production, Consumption, Export, Import and Forecast by 2022

10 October, 2017
 

Biochar Market report is an essential reference for who looks for detailed information on Biochar market. The report covers data on and its regional markets including historical and future trends for supply, market size, prices, trading, competition and value chain as well as major vendors’ information.

Report Scope:

Get Sample PDF of report @ http://www.360marketupdates.com/enquiry/request-sample/11085940

Some of Important topics in Biochar Market Research Report

Chapter Three Market Dynamics of Biochar Industry

Chapter Four & Five Market of Biochar (2012-2016) and Forecast (2017-2022) on

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Chapter Eight Analysis of Key Vendors (Including Company Profile, SWOT Analysis, Production Information etc.)

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Major Manufacturers analysed in this report:

To provide information on competitive landscape, report includes detailed profiles of Biochar industry key players. For each player company profiles, product details, capacity, price, cost, gross consumption and revenue is specified for better understanding. Their contact information is also provided. Moreover, the Biochar industry development trends and marketing channels are analysed.

Overall, the report provides an in-depth insight from 2012-2022(forecast) of Biochar industry covering all important parameters.

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biochar production equipment

10 October, 2017
 

When you are interested in any kind of business model that may increase your profits, and you are interested in an issue that is utterly sustainable, carbonization machines are fantastic choices in terms of producing products that people would like to buy. It allows materials that will stop being recycled generally being converted into something usable. It is possible to produce biofuel which may be employed in machines that run on diesel, and this is why making energy with carbonization machine can be a profitable business idea. You could check here: WWW.WASTERECYCLINGPLANT.COM.

How Can You Begin This Business?

You could start this sort of business by first investing into a pyrolysis machine that will be able to do the carbonization process. In order to make charcoal, you should first have materials which can be split up in the charcoal itself, an organic byproduct of the process. The ability to access biomaterial, sludge, rubber, or plastic is absolutely all you need. There are millions of landfills throughout the world, with billions of plenty of material waiting to use. For this reason this type of business structure is becoming so well liked.

Where For Top Level Machines

You can get the best machines by merely searching on international websites where industrial machines can be bought. It is possible to search for these organizations that have advertised on these platforms, looking at what exactly it is they sell. In case they have a spot for customers to leave comments or feedback, see what they have to say. Consider the prices that they can elect to sell their goods for, and all of this information can bring you to the best waste processing machine that you should initially purchase.

How To Make This A Prosperous Business

There are only three components into a successful business. You need to have a way of generating a product which will sell. You need to have buyers. So you must in addition have a product that is at demand. This is just what you will definately get whenever you invest into these carbonization machines. They can be producing a merchandise that people absolutely would like to purchase. Furthermore, you can probably obtain access to a virtually unlimited availability of the content which will be employed in this procedure. Everything remains is to make certain that you will find the machine working, and start to market this to people that are seeking this sort of product.

Now that you possess a basic idea of why making energy with carbonization machine is a profitable business, you should invest the cash into this idea. It is possible to start making quite a bit of cash, and move ahead toward investing some of that into the business to grow your operations. The more biomaterial, plastic, or any material that may check out the pyrolysis process that you have, the more effective off you are going to be. It is a terrific way to move forward into this emerging industry that so many individuals our continuing to cash in on. Hop over to this website: http://wasterecyclingplant.com/charcoal-making-machine/.


Biochar Production Equipment

10 October, 2017
 


Download Biochar for Environmental Management

11 October, 2017
 

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Biochar Market Growth Opportunities, Analysis and Forecasts Report 2017-2022

11 October, 2017
 

Biochar market Report speaks about the manufacturing process. The process is analysed thoroughly with respect three points, viz. raw material and equipment suppliers, various manufacturing associated costs (material cost, labour cost, etc.) and the actual process of whole Enterprise Biochar market.

Short Detail About Biochar Market Report :  “Biochar is the solid product of pyrolysis, designed to be used for environmental management. IBI defines biochar as: A solid material obtained from thermochemical conversion of biomass in an oxygen-limited environment.

Biochar is charcoal used as a soil amendment. Like most charcoal, biochar is made from biomass via pyrolysis. Biochar can increase soil fertility of acidic soils (low pH soils), increase agricultural productivity, and provide protection against some foliar and soil-borne diseases. Furthermore, biochar reduces pressure on forests. Biochar is a stable solid, rich in carbon, and can endure in soil for thousands of years.”

Get Sample PDF of Biochar Market Report @ http://www.360marketupdates.com/enquiry/request-sample/10385329

Biochar Market Segment by Manufacturers, this report covers:  Diacarbon Energy,Agri-Tech Producers,Biochar Now,Carbon Gold,Kina,The Biochar Company,Swiss Biochar GmbH,ElementC6 ,BioChar Products,BlackCarbon,Cool Planet,Carbon Terra,Pacific Biochar,Vega Biofuels   and many others. In this introductory section, the research report incorporates analysis of definitions, classifications, applications and industry chain structure.

Biochar Market Segment by Regions, regional analysis covers:  North America (USA, Canada and Mexico),Europe (Germany, France, UK, Russia and Italy),Asia-Pacific (China, Japan, Korea, India and Southeast Asia),South America, Middle East and Africa

Biochar Market Segment by Type, covers: Wood Source Biochar,Corn Stove Source Biochar,Rice Stove Source Biochar,Wheat Stove Source Biochar,Other Stove Source Biochar

Biochar Market Segment by Applications, can be divided into: Soil Conditioner,Fertilizer,Others

Scope of the Biochar Market Report: This report focuses on the Biochar in Global market, especially in North America, Europe and Asia-Pacific, South America, Middle East and Africa. This report categorizes the market based on manufacturers, regions, type and application.

Browse Detailed TOC, Tables, Figures, Charts and Companies Mentioned in Biochar Market Research Report @ https://www.360marketupdates.com/10385329   

The Biochar market analysis report speaks about the growth rate of Biochar market in 2022 manufacturing process, key factors driving the Global Biochar market, sales, revenue, and price analysis of top manufacturers of Biochar Market, distributors, traders and dealers of Biochar Market.

Next part of Biochar Market Research Report contains additional information like key vendors in Biochar Market space, Biochar Market opportunities and threats faced by the vendors in the Global Biochar Market , opportunities, market risk and market overview of the Biochar Market . The process is analysed thoroughly with respect three points, viz. raw material and equipment suppliers, various manufacturing associated costs (material cost, labour cost, etc.) and the actual process.

The next part also sheds light on the gap between supply and consumption. Apart from the mentioned information, growth rate of Biochar market in 2022 is also explained. Additionally, type wise and application wise consumption tables and figures of Biochar market are also given.

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Barton-based Green State Biochar wins DRM startup company prize

11 October, 2017
 

“This is an environmentally oriented business that shows great promise in the areas of agriculture, waste management and water quality,” explained …

Read Complete News at : Barton-based Green State Biochar wins DRM startup company prize 


Barton-based Green State Biochar wins DRM startup company prize

11 October, 2017
 

Vermont Business Magazine Business owners Roger and Donna Pion and their startup company Green State Biochar are the winners of $10,000 in legal services from the Intellectual Property Practice Group at Downs Rachlin Martin PLLC. The winner was chosen from an impressive list of applicants from across New England. 

“This is an environmentally oriented business that shows great promise in the areas of agriculture, waste management and water quality,” explained Kevin McGrath, an attorney in the IP Group at DRM. “It is the type of home-grown company that the State of Vermont has sought to encourage. The owners are already in the final round of this year’s Fresh Tracks Road Pitch later this month and we’re very pleased to help the company get off the ground in northern New England.“

Green State Biochar will produce biochar for use in agriculture, and manufacture, install and monitor filtration systems that diminish runoff from identified sources and remove odors and algae from waterways. Biochar is manufactured in a process that converts agricultural waste into a soil enhancement that can hold carbon, increase soil diversity and discourage deforestation.  Its production can also yield renewable energy byproducts and it has recently gained attention as a tool to fight climate change through sequestration of atmospheric carbon.

The new company is committed to the reduction of biomass waste and the production of biochar for use in agriculture.  It plans to construct a biochar machine that will increase production from the current 360 pounds per day to one ton per hour and to begin large scale production of filtration systems on a 50 acre plot in Greensboro Bend.

The Pions will also be one of the competitors at the Fresh Tracks Road Pitch finals on Oct. 19 from 4 to 9 p.m. at the Center for Communications and Media at Champlain College in Burlington. 

With offices located in Vermont and New Hampshire, more than 55 DRM attorneys represent regional, national and international entrepreneurs, venture capitalists, technology businesses and Fortune 100 companies. The legal services provided by the firm include bankruptcy and business restructuring, general business, captive insurance, energy and telecommunications, intellectual property law, labor and employment, litigation, real estate and land use, environmental and tax law, and trust and estate planning, plus legislative and regulatory services through the firm’s Government and Public Affairs group. DRM is the exclusive member firm in Vermont for Lex Mundi – the world’s leading network of independent law firms with in-depth experience in more than 100 countries worldwide. DRM expects to repeat the contest in 2018. 

Source: DRM (Burlington, Vt.) 

 

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Removing carbon from atmosphere can be simple and low tech

11 October, 2017
 

But “if you’re really concerned about coral reefs, biodiversity [and] food production in very poor regions, we’re going to have to deploy negative emission technology at scale,” said Bill Hare of Climate Analytics, a science and policy institute. “I don’t think we can have confidence that anything else can do this,” the Berlin-based chief executive told a London climate change conference.

Nextbigfuture has listed simple and low cost and scalable carbon dioxide mitigation since 2009 and there are new ones as well.

These methods will be faster to scale then complicated and industrial intensive carbon capture at coal and natural gas plants and factories and creating massive national and global pipelines to move the captured gas into underground storage.

Expand Commercial Kelp Growth by 100 times

There is a proposal to use about 9% of the oceans surface for massive kelp farms. The Ocean surface area is about 36 billion hectares. This would offset all CO2 production and provide 0.5 kg of fish and sea vegetables per person per day for 10 billion people as an “incidental” by-product. Nine per cent of the world’s oceans would be equivalent to about four and a half times the area of Australia.

In 2016, seaweed farms produce more than 25 million metric tonnes annually. The global value of the crop, US$6.4 billion (2014), exceeds that of the world’s lemons and limes.

A 2016 report from the World Bank estimates that the annual global seaweed production could reach 500 million dry tons by 2050 if the market is able to increase its harvest 14% per year. Hitting that 500 million mark would boost the world’s food supply by 10% from the current level, create 50 million direct jobs in the process and, as a biofuel, replace about 1.5% of the fossil fuels used to run vehicles. The Ocean forest plan would be to accelerate growth of seaweed farming to 25-50% per year growth and reach about 20-60 billion tons per year of production. The world currently produces about 4 billion tons per year of agricultural product.

Ocean Afforestation (aka Ocean Macroalgal Afforestation (OMA)), has the potential to reduce atmospheric carbon dioxide concentrations through expanding natural populations of macroalgae, which absorb carbon dioxide, then are harvested to produce biomethane and biocarbon dioxidevia anaerobic digestion. The plant nutrients remaining after digestion are recycled to expand the algal forest and increase fish populations. A mass balance has been calculated from known data and applied to produce a life cycle assessment and economic analysis. This analysis shows the potential of Ocean Afforestation to produce 12 billion tons per year of biomethane while storing 19 billion tons of CO2 per year directly from biogas production, plus up to 34 billion tons per year from carbon capture of the biomethane combustion exhaust. These rates are based on macro-algae forests covering 9% of the world’s ocean surface, which could produce sufficient biomethane to replace all of today’s needs in fossil fuel energy, while removing 53 billion tons of CO2 per year from the atmosphere, restoring pre-industrial levels. This amount of biomass could also increase sustainable fish production to potentially provide 200 kg/yr/person for 10 billion people. Additional benefits are reduction in ocean acidification and increased ocean primary productivity and biodiversity.

Iron sulphate in the ocean to make large algae blooms is restoring processes that used to exist with more Whales

The Haida Salmon Restoration Corporation, financed $2.5 million of their own savings, to have a boat put 120 tons of iron sulphate into the ocean where baby salmon would come to feed.

The number of salmon caught in the northeast Pacific more than quadrupled, going from 50 million to 226 million. In the Fraser River, which only once before in history had a salmon run greater than 25 million fish (about 45 million in 2010), the number of salmon increased to 72 million.

Iron sulphate dumping returned over 100 times the value in fish in one year versus the cost of the dumping

Iron sulphate dumping returned about 1000 times the weight in increased fish versus the amount of dumped iron sulphate

Millions of tons of plastic and junk are dumped into the oceans and rivers every year. Iron Sulphate dumping could restore or even increase fish catches beyond historical levels

David Brin points out that ocean-fertilization is the inverse of irrigation. You are adding “land” to water in the form of nutrients.

Hundreds of years ago there were more whales and humans killed the whales. Large whales pooping in the ocean had the same effect as dumping iron sulphate.

Biochar sequestering

Preliminary results in a greenhouse study showed that low-volatility [biochar] supplemented with fertilizer outperformed fertilizer alone by 60%.

Because the heat and chemical energy released during pyrolysis could replace energy derived from fossil fuels, the IBI calculates the total benefit would be equivalent to removing about 1.2 billion metric tons of carbon from the atmosphere each year.

Ten other ways to reduce emissions that are not geoengineering

The following are my list of top ten other technologies that would have a big effect on reducing emissions. Some are not low tech but they have dual usage in that they may help build cities in a cleaner way. They are actions that are mostly economically justified for other purposes. These will reduce the unintentional effects on the environment and climate but are not classified as geoengineering. Although current emissions from cars, buildings, agriculture and industry all apparently effect the climate.

1. China Broad Group making “Can be built” factory mass produced high rises and skyscrapers. Deployment of 5 times improved energy efficiency by 2020 with many partners (30% of new construction) would save 400 million tons of CO2 per year

2. Black Carbon free cookers for 700 million households would save 18% of black carbon soot. Equal to about 10% (3 billion tons) of today’s CO2 in warming effect. Current target is 100 million households by 2020 for the equivalent of about 400 million tons of CO2 per year in warming reduction.

3. Diesel particulate filters for cars and trucks and other diesel engines can reduce the 14% of black carbon from transportation. Majority of vehicles are existing older cars and trucks already on the road and would need retrofits

4. Massive amounts of electrification of vehicles could reduce carbon dioxide and other emissions. There are 150 million electric bikes and scooters (mostly in China). This could increase to 500 million electric bikes and scooters by 2020. This will reduce the usage of 2 billion regular cars and vehicles. There will at best by 20 million electric or hybrid cars without massive change.

5. A variety of DOE and other approaches to retrofitting existing buildings for efficiency could increase energy efficiency by about 20%. Perhaps 1 billion tons of CO2 per year worldwide by 2020.

6. Reducing carbon dioxide emissions from concrete. 5% of world total. There is green cement which can absorb carbon dioxide. Green cement is unlikely to be deployed on a wide scale by 2020 because of the need for long term studies to prove develop and prove the safety of the new materials. Also, the new material have to be scaled up.

7. Scaling up of regular nuclear power and hydro power. The world will add about 1000 TWh of hydropower and about 1200 TWh of nuclear power before 2030

8. Nuclear fission technology advances –
* Annular fuel (MIT invented, being commercialized in South Korea (can boost existing and future reactors by 20-50%)
* factory mass produced pebble bed reactors (China under 210 MWe being built, first 2016-2018)
* factory mass produced breeder reactors Russia, first in 2018-2025

Should be big impact from 2018-2030

9. Johannes Lehmann of Cornell University estimates that by switching to slash-and-char from slash-and-burn agriculture, which turns biomass into ash using open fires that release black carbon and GHGs, 12% of anthropogenic carbon emissions caused by land use change could be reduced annually, which is approximately 660 million tons of CO2-eq. per year, or 2% of all annual global CO2-eq emissions.

10. Lighter roads and roofs too

Lighter colored roofs and roads would offset the equivalent of 130 to 150 billion tons of CO2.

From now until 2040, if you want to have a 0.75 degree celsius increase instead of a possible 1.25 degree celsius temperature increase then soot mitigation should be targeted. Measure against CO2 would have an effect by around 2070.

Soot makes the ice darker and melt faster and increases the amount of heat that is absorbed instead of reflected.

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Biokolsfo

11 October, 2017
 

save the world?
How can black charcoal make the city greener?
Have you heard about biochar? It is charcoal that can be made out of twigs and
branches from your garden and the city parks.
 Biochar has been mixed into soil for thousands of years all over the world to
make trees and other plants feel better. Biochar is also a simple way to fight
climate change by sequestering carbon.
 Good for you, for the city and for the future!

Let’s start a biochar project!
Stockholm Biochar Project uses park and Together we fight climate change The biochar is used
garden waste to produce biochar and and make our city greener in the city plant beds
renewable energy.
 Biochar is a fantastic soil conditioner
that retains water, air and nutrients in the
soil. Once in the soil biochar is a carbon sink
that contributes to a greener city and that
decreases the levels of carbon dioxide in
the atmosphere for hundreds to thousands
of years.
 The energy becomes heat for the city’s
The energy becomes heat for
district heating network within Open
the city’s district heating network
District HeatingTM – a project to recycle
within Open District HeatingTM
excess heat in Stockholm city.
 Stockholm Biochar Project’s goal is to
produce heat for 400 apartments and to
create a carbon sink corresponding to the
yearly carbon dioxide emissions from 3500
clean cars. This way we are doing a small –
but important – action to save the world.

Much thanks to Mayors Challenge
The Stockholmers get biochar
Mayors Challenge is an innovation compe-
to use in their gardens in
tition for cities arranged by the American
exchange for their garden waste
organisation Bloomberg Philanthropies to
initiate and spread innovative projects.
 155 cities participated in the European
version of Mayors Challenge but only five Park and garden waste is turned The city and the citizens
where awarded with winnings to implement into biochar and renewable energy create the world’s first urban
their projects. Stockholm was one of the carbon sink with biochar
five winners.
 The project will run for three years with
the support of Bloomberg Philanthropies,
aiming to spread the biochar system to
more cities all over the world.
This is how you mix
your own biochar
soil for your garden.

1 Crush the biochar so the pieces are smaller than 2 cm wide.
2 Mix the biochar into your soil. Aim for 5 liters per square meter.
3 Ready to plant!

To know more!
Stockholm Biochar Project is Stockholm’s environmental initiative. It is based on
shared commitment from the city and all of us living here.
Read more about the biochar initiative at stockholm.se/biokol

Do you have ideas on how we can develop the project? Contact us!
mattias.gustafsson@extern.stockholmvatten.se

Stockholm Biochar Project is one of five winners of
Bloomberg Philanthropies’ Mayors Challenge.

Generate 3d Idf Data Ena handful of carbon.pdf2009_Review of Pyrolyisis Platform for Coproducing Bio-oil and BiocharPDS & Certificates -- CompleteSteinemann Flyer A4 Dfoil 76 106 en 2017 WebFranzluebbers_2010 - Achieving Soil Organic Carbon Sequestration With Conservation AgricultContractor Tool and Equipment Register124125919 Large Span Timber StructuresMalhi Et Al Ptrs Forests Carbon and Global ClimateUntitledGLXXMobil Delvac 1 ATFhyretetdfhjykiyucrtettdyrhrny7,ikejyshregdjne6h5t4seJust in Bongchun Nm Fka 2009 Abs4 Energy EARD by PPerera 12Mar2014 RevWEG Part Number Configuration Weg Motors Usapnconf Quick Guide EnglishCA OAbriefing InviteSynopsis Hybrid of Traditional and Modern ArchitectureSupplier Quality Analysis Sample.xlsxRegeringens_Smart_Grid_Strategy_UK_web.pdf37147839 Resume B Tech Fresher ElectronicsList of RefrigerantsFuji Mini C1 C2 Crossensc19 posterfinalSunmodule Solar Panel 250 Mono DsOrange Bookfactsheet_livestockslongshadow_2PICO Offer Tally & Loss, Damage Prevention for Bagged Rive LoadingClimate Change and HealthCapitol Point MLCPComparisonHipy simetrico - DetailstmpFF90.tmptmpB529.tmpHOUSE HEARING, 109TH CONGRESS - REBALANCING THE CARBON CYCLEOrbiting Carbon Observatory Science Writers GuideSENATE HEARING, 110TH CONGRESS - SENATORS' PERSPECTIVES ON GLOBAL WARMINGTmp 5437Tutorial Psdtohtmlcss13TutorialTutorial Psdtohtmlcss10Tutorial Psdtohtmlcss12Tutorial Psdtohtmlcss6Tutorial Psdtohtmlcss11Tutorial Psdtohtmlcss9Tutorial-PSDtoHTMLCSS8.pdfTutorial-PSDtoHTMLCSS3.pdfTutorial-PSDtoHTMLCSS7.pdfTutoTutorial Psdtohtmlcss7Tutorial Psdtohtmlcss14Tutorial PsdtohtTutorial-PSDtoHTMLCSS2.pdfipchange233.txtdeerr reer.txtIzgubljeni-simbol_Den-Braun.pdfT137769639.pdfHemlös Competition Brief Englishgrgw wrqewq.txtgrgw wrqewqdafdr rwr.txtDokumeWohnuHemt 1206771888-3-Weeks-to-Shredded-Mike-Dolce.pdfterete

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Biochar Fertilizer Market 2017: Industry Demand, Insight & Forecast By 2022

11 October, 2017
 

 “Biochar Fertilizer Market is valued at USD XX million in 2016 and is expected to reach USD XX million by the end of 2022, growing at a CAGR of XX% between 2016 and 2022.”

This Growth is Due to Increase Demands of Biochar Fertilizer Market Covering Various Industries and Different Regions across the Globe.

The Research begins with the Overview of Global Biochar Fertilizer Market Analyzing Industrial Chain, Sourcing Strategy, and Downstream Buyers. The Research also Provide Information about Manufacturers,  Market Competition, Cost, Market Effect Factors with Market Forecast (2017-2022). This enables the buyer of the report to gain a telescopic view of the competitive landscape and plan the strategies accordingly.

Get a Sample of Biochar Fertilizer Market research report from

https://www.marketreportsworld.com/enquiry/request-sample/10585498

Major companies are as follows:
Biogrow Limited
Biochar Farms
Anulekh
GreenBack
Carbon Fertilizer
Global Harvest Organics LLC
Major classifications are as follows:
Organic Fertilizer
Inorganic Fertilizer
Compound Fertilizer
Major applications are as follows:
Cereals
Oil Crops
Fruits and Vegetables
Major regions are as follows:
Europe
North America
China
Japan
Southeast Asia

Have any Query Regarding the Global Biochar Fertilizer Market Report? Contact us at:

https://www.marketreportsworld.com/enquiry/pre-order-enquiry/10585498

Key Points Covered in Biochar Fertilizer Market Report:

Global Biochar Fertilizer Market Research Report 2017

Global Biochar Fertilizer Market Competition by Manufacturers

Global Biochar Fertilizer Capacity, Production, Revenue (Value) by Region (2012-2017)

Global Biochar Fertilizer Supply (Production), Consumption, Export, Import by Region (2012-2017)

Global Biochar Fertilizer Production, Revenue (Value), Price Trend by Type

Global Biochar Fertilizer Market Analysis by Application

Global Biochar Fertilizer Manufacturers Profiles/Analysis

Biochar Fertilizer Manufacturing Cost Analysis

Industrial Chain, Sourcing Strategy and Downstream Buyers

Marketing Strategy Analysis, Distributors/Traders

Market Effect Factors Analysis

Price of Report (single User Licence): $ 3500

Get Discount on Biochar Fertilizer Market Report at:

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Global Biochar Fertilizer Market Forecast 2017-2022

The Biochar Fertilizer industry research report analyses the supply, sales, production, and market status comprehensively. Production market shares and sales market shares are analyzed along with the study of capacity, production, sales, and revenue. Several other factors such as import, export, gross margin, price, cost, and consumption are also analyzed under the section Analysis of Biochar Fertilizer production, supply, sales and market status.

 

 


'Plan B': Seven ways to engineer the climate

11 October, 2017
 


Biochar Market: Agriculture Sector and Waste Management Leading Application Segments

11 October, 2017
 

Biomass, the carbon-rich product produced from the pyrolytic treatment of biomass or greenwaste, can be used to improve the environment and agriculture in a number of ways. Teh high level of persistence of the substance in soil combined with its nutrient-retention properties make it an ideal solution for soil amendment and a way of improving crop yields. Moreover, the substance is used as an ideal way of carbon sequestration, providing significant implications for the mitigation of environmental degradation owing to the rising levels of CO2 in the atmosphere.

In a recent report, Transparency Market Research estimates that the global biochar market will chart an impressive CAGR of 14.5% from 2017 to 2025, incrementing to an opportunity of US$14,751.8 thousand by 2025 from its estimated valuation of US$444.2 thousand in 2016.

In this blog post, TMR analysts answer questions related to some of the most crucial aspects of the Global Biochar Market:

Which feedstock is most prominently used for the production of biochar?

A variety of feedstock is used for the production of biochar, including animal manure, woody biomass, agricultural waste, and produces such as sugarcane, coconut, rice, bamboo, and cereals. Of these, the segment of woody biomass accounted for nearly 50% of the overall market in 2016. The high quality of biochar produced from woody biomass finds vast usage in the field of soil amendment. The improvement of quality of soil achieved with the use of biochar is highly valued in areas such as agriculture, forestry, and gardening. In the near future as well, woody biomass will continue to remain the most used feedstock for the production of biochar, accounting for a significant share of the global biochar market in the near future.

Which application area presents the most promising outlook for biochar?

Biochar finds usage across only a handful but highly promising application areas. Its usage is prominent in industries such as agriculture, forestry, climate change mitigation, and electricity generation. Of these, the segment of agriculture is presently the key consumer of the overall volumes of biochar produced annually on a global front. A number of benefits associated with the use of biochar as a soil amendment product, including a significant improvement in quality of soil, improved interaction of soil with fertilizers, and improved strength of soil continue to increase the agronomic value of the greenwaste. The segment is expected to remain the leading contributor of revenue to the global biochar market in the next few years as well.

Request to view Sample Report: https://www.transparencymarketresearch.com/sample/sample.php?flag=S&rep_id=2863

Which regional market is the primary consumer of biochar?

Geographically, the market for biochar in North America accounts for the dominant share of the total volume of biochar consumed annually on a global front. The region accounted for a nearly 60% of the overall market in 2017. With such high share in the global market, North America naturally takes the position of the most influential regional market, the one which could play a key role in the overall development of the global biochar market in the next few years as well. The rising demand for biochar for applications such as carbon sequestration and soil amendment in the next few years.
The demand for biochar is also steadily rising in the Europe market and is expected to gain strength in the next few years. The well-developed agriculture sector in the region and the rising demand for more agricultural produce to provide for the rising population are key to the promising outlook for biochar in the Europe market in the next few years.

CMFE News brings you the biggest and the breaking news items from across the globe. The ever-growing database offers its readers a wide coverage in fields of technology, business, science, and lifestyle. From latest innovations to emerging trends, CMFE News is one-stop-all for daily dose of vital information.

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Soil Regeneration with Bio-Char

11 October, 2017
 


ANZBI Summer Webinar Biochar in Food – A Case Study “Terra Preta Truffles”

11 October, 2017
 

Thursday December 7 at 8:30- 9:30am AEDT (NSW) + Q & A

Terra Preta Truffles took out the prestigious Gold Award for Champion Australian Fresh Produce – Truffles, in 2016, as well as the coveted overall Champion Australian Produce in the Australian Good Food Awards. They export their French Black Truffles all over the World and like their name suggests they grow them in biochar amended soil.

Peter Marshall from Terra Preta Truffles in Braidwood, N.S.W. (near Canberra) will present on their success story of using biochar in the growing of Award Winning Australian produce in our first ever ANZBI Summer Live Webinar followed by a brief research analysis on their soil & truffles from Prof. Stephen Joseph OAM.

Find out the secret to Peter’s success and what’s happening underneath the soil and in the truffles themselves via a Live Zoom Webinar which will run for an hour followed by Q & A.

$39 to register or free to ANZBI Members.

 

ANZBC17 is an Initiative of a Working Group of Biochar Producers & Growers from Aust. & N.Z.

Social Media:
facebook.com/biocharfest

Support the ANZBC17 industry event.


Barton-based Green State Biochar wins DRM startup company prize

11 October, 2017
 

By

News Release — Downs Rachlin Martin
Oct.11, 2017

Contact:
Joseph L. Choquette III, External Affairs Manager, 802-225-5510

(Burlington, Vt.) Business owners Roger and Donna Pion and their startup company Green State Biochar are the winners of $10,000 in legal services from the Intellectual Property Practice Group at Downs Rachlin Martin PLLC. The winner was chosen from an impressive list of applicants from across New England.

“This is an environmentally oriented business that shows great promise in the areas of agriculture, waste management and water quality,” explained Kevin McGrath, an attorney in the IP Group at DRM. “It is the type of home-grown company that the State of Vermont has sought to encourage. The owners are already in the final round of this year’s Fresh Tracks Road Pitch later this month and we’re very pleased to help the company get off the ground in northern New England.“

Green State Biochar will produce biochar for use in agriculture, and manufacture, install and monitor filtration systems that diminish runoff from identified sources and remove odors and algae from waterways. Biochar is manufactured in a process that converts agricultural waste into a soil enhancement that can hold carbon, increase soil diversity and discourage deforestation. Its production can also yield renewable energy byproducts and it has recently gained attention as a tool to fight climate change through sequestration of atmospheric carbon.

The new company is committed to the reduction of biomass waste and the production of biochar for use in agriculture. It plans to construct a biochar machine that will increase production from the current 360 pounds per day to one ton per hour and to begin large scale production of filtration systems on a 50 acre plot in Greensboro Bend.

The Pions will also be one of the competitors at the Fresh Tracks Road Pitch finals on Oct. 19 from 4 to 9 p.m. at the Center for Communications and Media at Champlain College in Burlington. For more information on the new company, visit www.GreenStateBiochar.com.

 

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Making use of garden waste producing biochar – feasible?

12 October, 2017
 

type Exception report

message Argument ‘userAgentString’ must not be null.

description The server encountered an internal error that prevented it from fulfilling this request.

exception

net.sf.qualitycheck.exception.IllegalNullArgumentException: Argument 'userAgentString' must not be null. 	net.sf.qualitycheck.Check.notNull(Check.java:2507) 	net.sf.uadetector.UserAgent$Builder.<init>(UserAgent.java:63) 	net.sf.uadetector.parser.AbstractUserAgentStringParser.parse(AbstractUserAgentStringParser.java:198) 	net.sf.uadetector.parser.AbstractUserAgentStringParser.parse(AbstractUserAgentStringParser.java:39) 	com.javaranch.jforum.url.MobileStatus.isOnMobileDevice(MobileStatus.java:65) 	com.javaranch.jforum.url.MobileStatus.getMobileRequest(MobileStatus.java:52) 	net.jforum.context.web.WebRequestContext.<init>(WebRequestContext.java:107) 	net.jforum.JForum.service(JForum.java:197) 	javax.servlet.http.HttpServlet.service(HttpServlet.java:727) 	org.apache.tomcat.websocket.server.WsFilter.doFilter(WsFilter.java:52) 	net.jforum.JForumFilter.doFilter(JForumFilter.java:64) 	com.javaranch.jforum.url.JSessionIDFilter.doFilter(JSessionIDFilter.java:33) 	com.javaranch.jforum.url.UrlFilter.doChain(UrlFilter.java:78) 	com.javaranch.jforum.url.UrlFilter.doFilter(UrlFilter.java:61) 	net.jforum.util.legacy.clickstream.ClickstreamFilter.doFilter(ClickstreamFilter.java:53) 	net.jforum.JpaFilter.executeFilter(JpaFilter.java:59) 	net.jforum.JpaFilter.doFilter(JpaFilter.java:48) 	com.javaranch.jforum.csrf.CsrfFilter.doFilter(CsrfFilter.java:78) 	net.jforum.JForumExecutionContextFilter.doFilter(JForumExecutionContextFilter.java:39) 	net.jforum.UrlMultiSlashFilter.doFilter(UrlMultiSlashFilter.java:33) 	net.jforum.JForumRequestCharacterEncodingFilter.doFilter(JForumRequestCharacterEncodingFilter.java:34) 

note The full stack trace of the root cause is available in the Apache Tomcat/7.0.57 logs.


Barton-based Green State Biochar wins DRM startup company prize

12 October, 2017
 

Follow @NewsVermont_ on Twitter!


Biochar Market Trends, Cost Structure Analysis, Growth Opportunities And Forecast To 2022

12 October, 2017
 

Biochar Market report presents a detailed analysis of the industry by size, growth rate, key players, regions, product types & applications, Industry Production, Sales and Consumption Status and market Prospects of the Biochar Market. The report also assesses key factors that affected market growth and with the help of previous figures. This report expands current scenario and forecast of Biochar industry.

In this report, the global Biochar market is valued at USD XX million in 2017 and is projected to reach USD XX million by the end of 2021, growing at a CAGR of XX% during the period 2017 to 2021.

The major manufacture profiled in Biochar Market report are:

Get PDF Sample of Report @ https://www.absolutereports.com/enquiry/request-sample/11210720 

Biochar Market report gives insights of Industrial Chain, Major Player’s Market Share and Upstream raw materials suppliers Involved in Biochar Market based on Industrial Chain Analysis, Production Process Analysis, Raw Material Cost & Manufacturing Cost Structure of Biochar, Source of Raw Materials for Major Manufacturers present in Biochar Industry till 2016.

Based on product, Biochar market report displays the sales volume, revenue (Million USD), product price, market share and growth rate of each type, primarily split into-

Product Types:

On the basis on the end users/applications, Biochar market report focuses on the status and outlook for major applications/end users, sales volume, market share and growth rate of Biochar for each application, including-

Applications of Biochar Market:

Have Any Query? Ask Our Expert @ https://www.absolutereports.com/enquiry/pre-order-enquiry/11210720

Biochar Industry Segment by Countries: United States, Germany, United Kingdom, Japan, South Korea and China.

The Biochar Market report offers a complete assessment of the industry. The projections included in the report have been determined utilizing demonstrated research philosophies and presumptions. Thusly, the exploration report fills in as a vault of examination and data for each feature of the market, including Regional markets, methodology, types, and applications.

Price of Report: $1990 (For Single User)

Purchase Complete Biochar Market Report @ https://www.absolutereports.com/purchase/11210720

Key questions answered in the Biochar Market report:

 

Biochar Market report presents a detailed analysis of the industry by size, growth rate, key players, regions, product types & applications, Industry Production, Sales and Consumption Status and market Prospects of the Biochar Market. The report also assesses key factors that affected market growth and with the help of previous figures. This report expands current scenario and forecast of Biochar industry.

In this report, the global Biochar market is valued at USD XX million in 2017 and is projected to reach USD XX million by the end of 2021, growing at a CAGR of XX% during the period 2017 to 2021.

The major manufacture profiled in Biochar Market report are:

Get PDF Sample of Report @ https://www.absolutereports.com/enquiry/request-sample/11210720 

Biochar Market report gives insights of Industrial Chain, Major Player’s Market Share and Upstream raw materials suppliers Involved in Biochar Market based on Industrial Chain Analysis, Production Process Analysis, Raw Material Cost & Manufacturing Cost Structure of Biochar, Source of Raw Materials for Major Manufacturers present in Biochar Industry till 2016.

Based on product, Biochar market report displays the sales volume, revenue (Million USD), product price, market share and growth rate of each type, primarily split into-

Product Types:

On the basis on the end users/applications, Biochar market report focuses on the status and outlook for major applications/end users, sales volume, market share and growth rate of Biochar for each application, including-

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Activated carbon production thesis

12 October, 2017
 

Isla mía, ¡Qué bella eres y qué dulce!… D.M.LOYNAZ.

 

Preparation of porous bio-char and activated carbon from rice husk by leaching ash and chemical activationA fullerene is a molecule of carbon in the form of a hollow sphere, ellipsoid, tube, and many other shapes. Spherical fullerenes, also referred to as Supercapacitors (also known as ‘ultracapacitors’) offer a promising alternative approach to meeting the increasing power demands of energy-storage systems in V-207 Operation and Maintenance of Production Vacuum Systems (The course is a revised and updated version of V-207) This tutorial is designed to teach the basic So the main components of the filter are the pump, filter housing with the sand and activated carbon filter and the uv-lamp. Large particles like skin cells are Collects, disseminates, archives, and preserves theses and dissertations published by graduate students at The University of Western OntarioINTRODUCTION. In recent years, the interest in pyrogenic carbon (C) for agricultural use (biochar) has sharply increased . The focus of this growing interest recently Ethanol History – From Alcohol to Car Fuel. Today, we use ethanol for a wide range of purposes, from producing medicine and synthesizing chemical products to fueling Adsorption and biodegradation of 2-chlorophenol by mixed culture using activated carbon as a supporting medium-reactor performance and

Fullerene

model verificationPreparation of porous bio-char and activated carbon from rice husk by leaching ash and chemical activationA fullerene is a molecule of carbon in the form of a hollow sphere, ellipsoid, tube, and many other shapes. Spherical fullerenes, also referred to as Supercapacitors (also known as ‘ultracapacitors’) offer a promising alternative approach to meeting the increasing problem solving agent in artificial intelligence ppt power demands of energy-storage systems in V-207 Operation and Maintenance of Production Vacuum Systems (The course is a revised and updated version of V-207) This tutorial is designed to teach the basic So the main components of the filter are the pump, filter housing with the sand and activated carbon filter and the uv-lamp. Large particles like skin cells are Collects, disseminates, archives, and preserves theses and dissertations published by graduate students at The University of Western OntarioINTRODUCTION. In recent years, the interest in pyrogenic carbon (C) for agricultural use (biochar) has sharply increased . The focus of this growing interest recently Ethanol History – From Alcohol to Car Fuel. Today, we use ethanol for a wide range of purposes, from producing medicine and synthesizing chemical products to fueling Adsorption and biodegradation of 2-chlorophenol by mixed culture using activated carbon as a supporting medium-reactor performance and model verificationPreparation of porous bio-char and activated carbon from rice husk by leaching ash and chemical activationA fullerene is a molecule of carbon in the form of a hollow sphere, ellipsoid, tube, and many other shapes. Spherical fullerenes, also referred to as Supercapacitors (also known as ‘ultracapacitors’) offer a promising alternative approach to meeting the increasing power demands of energy-storage systems in V-207 Operation and Maintenance of Production Vacuum Systems (The course is a revised and updated version of V-207) This tutorial is designed to teach the basic So the main components of the filter are the pump, filter housing with the sand and activated carbon filter and the uv-lamp. Large particles like skin cells are Collects, disseminates, archives, and preserves theses and dissertations published by graduate students at The University of Western OntarioINTRODUCTION. In recent years, the interest in pyrogenic carbon (C) for agricultural use (biochar) has sharply increased . The focus of this growing interest recently Ethanol History – From Alcohol to Car Fuel. Today, we use ethanol for a wide range of purposes, from producing medicine and synthesizing chemical products to fueling

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climate change

12 October, 2017
 

What does it mean for Australia now there is scientific consensus on Earth’s warming on a global scale? How would it impact our own weather and our unique flora and fauna?

“Plan A” remains tackling the problem at its source. But efforts to sharply reduce greenhouse gas emissions have fallen woefully short and cannot, most scientists agree, avert catastrophic climate change on their own.

Here is a “Plan B” menu of geoengineering solutions that can be broken down into two categories: dimming the sun, which remains highly controversial, and capturing carbon dioxide (CO2).

SOLAR RADIATION MANAGEMENT

The goal is simple: prevent some of the sun’s rays from hitting the planet’s surface, forcing them instead back up into space.

One idea worthy of a Star Wars sequel would assemble giant orbiting mirrors to deflect a bit of Earth-bound radiation.

A more feasible scheme — experiments are scheduled for next fall in Arizona — would inject tiny reflective particles into the stratosphere.

Nature sometimes does the same: Debris from the 1991 eruption of Mount Pinatubo in the Philippines lowered the planet’s average surface temperature for a year or two afterwards.

Scientists have also calculated ways to alter clouds that could help beat the heat.

One is to brighten the white, billowy ocean clouds that rebound sunlight back up. Another would thin cirrus clouds, which unlike other types absorb more heat than they reflect.

Drawbacks: Even if it works as intended, solar radiation management would do nothing to reduce atmospheric CO2, which is making oceans too acidic. There is also the danger of knock-on consequences, including changes in rainfall patterns, and what scientists call “termination shock” — a sudden warming if the system were to fail.

OCEAN FERTILISATION

Microscopic ocean plants called phytoplankton gobble up carbon dioxide and drag it to the bottom of the ocean when they die.

Colony size is limited by a lack of natural iron, but experiments have shown that sowing the ocean with iron sulfate powder creates large blooms.

Drawbacks: Again, scientists worry about unintended impacts. Die-offs of plankton, for example, use up oxygen, which could create massive “dead zones” in the oceans, something already on the rise.

ENHANCED WEATHERING

Natural weathering of rocks — a chemical process — removes about one billion tonnes of CO2 from the atmosphere every year, about two per cent of total man-made C02 emissions. What if technology could accelerate that process?

Spreading a powdered form of a greenish iron silicate called olivine across certain landscapes — especially over the oceans and in the tropics — does just that, experiments have shown.

Drawbacks: Enhanced weathering could probably be rapidly scaled up, but it would be expensive to mine and mill enough olivine to make a difference.

BIOCHAR

Biochar is charcoal made by heating plant waste — rice straw, peanut shells, wood scraps — over long periods in low-oxygen conditions, for example buried in the ground. It can store CO2 for long periods, and also enriches soil.

Drawback: The scientific jury is still out on how quickly this method could be scaled up, and on the stability of biochar used as a fertiliser.

BECCS

Bioenergy with carbon capture and storage (BECCS) marries a natural process with a high-tech one.

Step 1: Plant rapeseed, sugarcane, corn or “second generation” biofuel crops such as switchgrass, which pull CO2 from the air while growing.

Step 2: While burning the harvested plants for energy, sequester the CO2 produced.

The net result is “negative emissions,” with less CO2 in the atmosphere than when the process started.

Virtually all climate change models projecting a future consistent with the Paris Agreement’s core goal of capping global warming at “well under” two degrees Celsius assume a key role for BECCS.

Drawback: Studies calculate that upward of 40 per cent of arable land would need to be given over to biofuel crops, putting the scheme in conflict with food crops.

DIRECT CO2 CAPTURE

Experiments have shown it is possible to suck CO2 directly from the air, converting it into fuel pellets or storing it underground.

A Canadian company backed by Microsoft co-founder Bill Gates launched a pilot facility in 2015, and another company is set to unveil one in Iceland this week.

Drawback: As of now, the technology is prohibitively expensive.

MASSIVE AFFORESTATION

Extensive planting of trees could significantly slow the concentration of CO2 in the atmosphere, which currently stands at more than 400 parts per million.

Drawback: Even if deforestation could be reversed — millions of hectares of tropical forests still disappear each year — the number of trees needed to put a dent in CO2 emissions would clash with food and biofuel drops.

Take a look at how Global Warming will affect us and the environment. Courtesy: AFP

News Limited Copyright © 2017. All times AEDT (GMT +11).


biochar

12 October, 2017
 

This product uses the Instagram API but is not endorsed or certified by Instagram. All Instagram™ logos and trademarks displayed on this application are property of Instagram.


CO2 Solutions Announces Partnerships with Hago Energetics and Breathe Applied Sciences in the …

12 October, 2017
 

TSX-V: CST  

QUEBEC CITY, Oct. 12, 2017 /PRNewswire/ – CO2 Solutions Inc. (or the “Corporation”) (TSXV: CST) is pleased to announce that Hago Energetics Inc. and Breathe Applied Sciences Private Limited will separately partner with CO2 Solutions in the Carbon XPRIZE. These two new partnerships bring the total number of entries to six for CO2 Solutions in this competition, including the Corporation’s two own entries converting CO2 into biofuels from respectively coal and natural gas flue gas streams.

On October 17, 2016, the organizers of the competition announced that CO2 Solutions had been selected to participate in the second round of the prestigious NRG COSIA Carbon XPRIZE. The Corporation has been authorized to partner with other semi-finalists offering a CO2 utilization technology only, and is the only provider of a CO2 capture technology in the Carbon XPrize to have publicly announced such synergistic partnerships. These combined entries will propose CO2 Solutions’ carbon capture technology with the partner’s CO2 utilization technology. The above-mentioned partnership entries are examples of such combinations. CO2 Solutions and its combined-entry partner would share equally any prize money that may be awarded to this joint entry.

Hago Energetics from Thousand Oaks, California, has developed a technology that converts CO2 from power plants into activated carbon, biochar and renewable fuels using energy from biomass.

Breathe Applied Sciences from Bangalore, India, has developed a technology that converts CO2 into value-added products such as methanol.

About the NRG COSIA Carbon XPRIZE Competition
Few challenges are greater and more critical than ensuring access to clean, affordable and abundant energy. As the global energy supply remains primarily derived from fossil fuels – the leading contributor to climate change – the $20M NRG COSIA Carbon XPRIZE will challenge the world to reimagine what we can do with CO2 emissions by incentivizing and accelerating the development of technologies that convert CO2 from a liability into valuable products. For more information, visit: carbon.xprize.org.

About CO2 Solutions Inc.
CO2 Solutions is an innovator in the field of enzyme-enabled carbon capture and has been actively working to develop and commercialize the technology for stationary sources of carbon emissions. CO2 Solutions’ technology lowers the cost barrier to Carbon Capture, Utilization and Sequestration (CCUS), positioning it as a viable CO2 mitigation tool, as well as enabling industry to derive profitable new products from these emissions. CO2 Solutions has built an extensive patent portfolio covering the use of carbonic anhydrase, or analogues thereof, for the efficient post-combustion capture of carbon dioxide with low‐energy aqueous solvents. Further information can be found at www.co2solutions.com.

CO2 Solutions Forward-looking Statements
Certain statements in this news release may be forward-looking. These statements relate to future events or CO2 Solutions’ future economic performance and reflect the current assumptions and expectations of management. Certain unknown factors may affect the events, economic performance and results of operation described herein. CO2 Solutions undertakes no obligation to update or revise any forward-looking statements, whether as a result of new information, future events or otherwise, except as may be required under applicable law.

Neither the TSX Venture Exchange nor its Regulation Services Provider (as that term is defined in the policies of the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this release.

SOURCE CO2 Solutions Inc.

www.co2solutions.com

Preview: CO2 Solutions Provides an Update on the Valorisation Carbone Québec Project

Oct 12, 2017, 07:30 ET

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Global Granular Biochar Market 2017-Diacarbon Energy, Agri-Tech Producers, Biochar Now …

12 October, 2017
 

‘Granular Biochar’ presents introduction about the Granular Biochar market, including definitions, specifications, and classifications. The report studies on Granular Biochar with revenue, productions, consumption, import and export in China, Japan, North America, Southeast Asia, Europe and India, and the overall statistical research of the Granular Biochar market.

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The report determines the detail price, market share and the growth rate of top manufacturers which is depend on the various segments of the Granular Biochar industry verticals.

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Key factors of this report give in-depth analysis of the development trends which elaborates of the product type, product application, and market trend.

The Granular Biochar market can be split into plenty of application and some other sectors. Manufacturing Plant Analysis and technical data of Granular Biochar market focuses on R&D status and technology sources. The report examined Granular Biochar market analysis containing capacity analysis, sales price analysis, sales analysis and Granular Biochar market is examined with considering price of the product, total volume, projection of demand and supply and product revenues.

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Permaculture Forums at Permies

12 October, 2017
 

type Exception report

message Argument ‘userAgentString’ must not be null.

description The server encountered an internal error that prevented it from fulfilling this request.

exception

net.sf.qualitycheck.exception.IllegalNullArgumentException: Argument 'userAgentString' must not be null. 	net.sf.qualitycheck.Check.notNull(Check.java:2507) 	net.sf.uadetector.UserAgent$Builder.<init>(UserAgent.java:63) 	net.sf.uadetector.parser.AbstractUserAgentStringParser.parse(AbstractUserAgentStringParser.java:198) 	net.sf.uadetector.parser.AbstractUserAgentStringParser.parse(AbstractUserAgentStringParser.java:39) 	com.javaranch.jforum.url.MobileStatus.isOnMobileDevice(MobileStatus.java:65) 	com.javaranch.jforum.url.MobileStatus.getMobileRequest(MobileStatus.java:52) 	net.jforum.context.web.WebRequestContext.<init>(WebRequestContext.java:107) 	net.jforum.JForum.service(JForum.java:197) 	javax.servlet.http.HttpServlet.service(HttpServlet.java:727) 	org.apache.tomcat.websocket.server.WsFilter.doFilter(WsFilter.java:52) 	com.javaranch.jforum.url.JSessionIDFilter.doFilter(JSessionIDFilter.java:33) 	com.javaranch.jforum.url.UrlFilter.doChain(UrlFilter.java:78) 	com.javaranch.jforum.url.UrlFilter.doFilter(UrlFilter.java:61) 	net.jforum.util.legacy.clickstream.ClickstreamFilter.doFilter(ClickstreamFilter.java:53) 	net.jforum.JpaFilter.executeFilter(JpaFilter.java:59) 	net.jforum.JpaFilter.doFilter(JpaFilter.java:48) 	com.javaranch.jforum.csrf.CsrfFilter.doFilter(CsrfFilter.java:78) 	net.jforum.JForumExecutionContextFilter.doFilter(JForumExecutionContextFilter.java:39) 	net.jforum.UrlMultiSlashFilter.doFilter(UrlMultiSlashFilter.java:33) 	net.jforum.JForumRequestCharacterEncodingFilter.doFilter(JForumRequestCharacterEncodingFilter.java:34) 

note The full stack trace of the root cause is available in the Apache Tomcat/7.0.57 logs.


biochar questions

12 October, 2017
 

type Exception report

message Argument ‘userAgentString’ must not be null.

description The server encountered an internal error that prevented it from fulfilling this request.

exception

net.sf.qualitycheck.exception.IllegalNullArgumentException: Argument 'userAgentString' must not be null. 	net.sf.qualitycheck.Check.notNull(Check.java:2507) 	net.sf.uadetector.UserAgent$Builder.<init>(UserAgent.java:63) 	net.sf.uadetector.parser.AbstractUserAgentStringParser.parse(AbstractUserAgentStringParser.java:198) 	net.sf.uadetector.parser.AbstractUserAgentStringParser.parse(AbstractUserAgentStringParser.java:39) 	com.javaranch.jforum.url.MobileStatus.isOnMobileDevice(MobileStatus.java:65) 	com.javaranch.jforum.url.MobileStatus.getMobileRequest(MobileStatus.java:52) 	net.jforum.context.web.WebRequestContext.<init>(WebRequestContext.java:107) 	net.jforum.JForum.service(JForum.java:197) 	javax.servlet.http.HttpServlet.service(HttpServlet.java:727) 	org.apache.tomcat.websocket.server.WsFilter.doFilter(WsFilter.java:52) 	net.jforum.JForumFilter.doFilter(JForumFilter.java:64) 	com.javaranch.jforum.url.JSessionIDFilter.doFilter(JSessionIDFilter.java:33) 	com.javaranch.jforum.url.UrlFilter.doChain(UrlFilter.java:78) 	com.javaranch.jforum.url.UrlFilter.doFilter(UrlFilter.java:61) 	net.jforum.util.legacy.clickstream.ClickstreamFilter.doFilter(ClickstreamFilter.java:53) 	net.jforum.JpaFilter.executeFilter(JpaFilter.java:59) 	net.jforum.JpaFilter.doFilter(JpaFilter.java:48) 	com.javaranch.jforum.csrf.CsrfFilter.doFilter(CsrfFilter.java:78) 	net.jforum.JForumExecutionContextFilter.doFilter(JForumExecutionContextFilter.java:39) 	net.jforum.UrlMultiSlashFilter.doFilter(UrlMultiSlashFilter.java:33) 	net.jforum.JForumRequestCharacterEncodingFilter.doFilter(JForumRequestCharacterEncodingFilter.java:34) 

note The full stack trace of the root cause is available in the Apache Tomcat/7.0.57 logs.


Effects of Application of Bagasse- and Sunflower Residue-derived Biochar to Soil on Growth and …

12 October, 2017
 

Oilseed sunflower (Helianthus annuus L.) has a lower seed yield and harvest index than other oil crops, and consequently produces a large amount of residue such as stem, receptacle, and oil cake. Our study attempted to use these residues as biochar for improving soil fertility, sunflower growth, and yield in subtropical island, Okinawa, Japan. To reveal the synergistic effect of biochar and inorganic fertilizer, we established four treatments: biochar (B), biochar + fertilizer (BF), fertilizer (F), and control, using biochar derived from bagasse (Exp. 1) and sunflower residue (Exp. 2). As a result, biochar application improved soil fertility, including soil electrical conductivity and mineral concentration. In spite of the initial positive effect of biochar application to plant growth this effect became negative later. The reason for this response might be the reduction of the net assimilation rate (NAR) during the later growth stage due to nitrogen deficiency after biochar application. Biochar application had a positive effect on sunflower growth during the early growth stage when the leaf area index (LAI) was dominant for the crop growth rate (CGR), while this effect became negative during the later growth stage when the NAR was dominant for the CGR. Further research is required to determine the effects of biochar application depending upon application methods, plant growth stages, and plant species.

Edited and published by : Japanese Society for Tropical Agriculture Produced and listed by : Sato Printing Co., Ltd.


PARB grant for a research project

13 October, 2017
 

Lahore – The Punjab Agriculture Research Board (PARB) has awarded Rs 21.9 million research project to the Government College University (GCU) Lahore Department of Environmental Sciences for cost effective improvement in nutritive value of rice and wheat crops through nanoparticles dopted biochar in saline-sodic soils. Punjab Agricultural Minister Mr. Muhammad Naeem Akhtar Khan Bhabha handed over the cheque of rupees six million as first installment to Dr. Waqas-ud-Din Khan, the Project Manager and Assistant Professor, GCU Lahore at a ceremony at the PARB office on Thursday. PARB Chief Executive Dr. Noor ul Islam and GCU Director Research Prof Dr Ikram ul Haq were also present.

NIPCO House, 4 Shaarey Fatima Jinnah,
LAHORE (Pakistan)
Tel : 092-42-6367580
Fax : 092-42-6367005


coal powdering solution

13 October, 2017
 

Eclectic gospel music site. New music and church reports added on a regular basis. My home church is famous Berean Seventh-day Adventist Church in Atlanta GA.

M&S – COAL GRINDING PLANTS … Grinding is a powdering or pulverizing process. … The HPGR is a flexible crushing solution, …

Biochar is charcoal used as a soil amendment. Biochar is a stable solid, rich in carbon, and can endure in soil for thousands of years. Like most charcoal, biochar is …

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The impact of modifications of the smectite-bearing raw materials on their thermal expansion ability

Alkin, ~) alcali fixum, or potash ; Alkir, 3 smoke of coal. Alkitram, pix … common alum. dulce, alum purified by re- peated solution …

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Port Manteaux churns out silly new words when you feed it an idea or two. Enter a word (or two) above and you’ll get back a bunch of portmanteaux created by jamming …

Amount of alumina in the solution was … "Kinetics of Recovery of Alumina from Coal Fly Ash through … fly ash by way of lime sintered self powdering …

Defined Term is a resource of legal, industry-specific, and uncommon defined terms to help lawyers draft more clearly, concisely, and accurately.

Reasons To ♥ Reusable Food Wrap If you’re like me, there’s probably no love lost between you and plastic. Most food-related plastics – including cling wrap …

Conducts only in aqueous solution. … Powdering coal releases hydrogen from compounds in coal. Powdering coal produces a large surface area.

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This chapter is composed of five sections: 2.1. Portland cement clinker burning, 2.2. The phase systems important for cement chemistry, 2.3. The clinkering process in …

The Project Gutenberg eBook, The Trimmed Lamp, by O. Henry This eBook is for the use of anyone anywhere at no cost and with almost no restrictions whatsoever.

Biochar is charcoal used as a soil amendment. Biochar is a stable solid, rich in carbon, and can endure in soil for thousands of years. Like most charcoal, biochar is …

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Read PDF Biochar for Environmental Management: Science, Technology and Implementation …

13 October, 2017
 


There's something special in the soil

13 October, 2017
 

Areas of patchy fog early. Intervals of clouds and sunshine. High 72F. Winds SSW at 5 to 10 mph..

Partly cloudy skies. Low 58F. Winds SSE at 10 to 15 mph.

John Gaunt, the owner of GreenTree Soils, holds a handful of his product on The Commons.

A handful of GreenTree Soil

John Gaunt, the owner of GreenTree Soils, holds a handful of his product on The Commons.

With the sky threatening rain, a number of volunteers trudged down Ithaca’s Bank Alley with 1.5 cubic foot bags of soil hefted on their shoulders, plopping them down on the ground to fill several new planters abutting the fountain.

Shorter than the last ones, these planters were nothing too special: movable, brown and durable, they’re much shorter than the last ones – allowing you to see the city’s nearly half-million dollar masterpiece – and today, are now filled with the same beautiful plantings so characteristic of the rest of the city’s downtown.

But the soil in those planters – the thing people are likely to notice least – might be the most special thing about them.

These planters were being filled with a special blend of soil made by local premium soil company Greentree, a company whose scientific roots allow for soils to be engineered specifically to certain growing environments. Greentree, owner and soil scientist John Gaunt says, is founded on technologies with a relevance to the world around us, one supportive of everything from the local food ecosystem to making whatever dent it can in the global issue of climate change.

A handful of GreenTree Soil

The secret is in the ingredients. The company’s soil blends use things like coconut coir – a byproduct of coconut production – as an alternative to peat, a natural carbon sink preserved, Gaunt said, as the company’s small contribution to the climate change equation.

The particular blend being laid on the Commons was a soil called Ithaca Blend, one tailor made for the Ithaca climate blended with a material called biochar: a carbon sequestration strategy contained in the soil that influences the amount of carbon returned to the air through photosynthesis. This material, Gaunt said, reduces the amount of carbon dioxide dispelled from the plant back into the air, all while providing an easier passage for nutrients to enter the plant.

“Which is exciting for anyone who cares about climate change,” Gaunt said.

But then there are the subtle interactions between plant and soil, where a nutrient balance tuned to facilitate improved fertility in each individual plant is employed in conjunction with the environment in which they are planted, engineered in a way that provides the appropriate nutrients for certain plants to maintain their hardiness in particular climates. They have soils specifically engineered to accommodate seed growth, another one – with different characteristics – to use in planters for transport.

“There’s a whole load of signalling that goes on between the plant and its environment,” Gaunt said. “This idea used to be really out there, but now it’s become more accepted – it’s something we’re really starting to unravel. And once you start thinking about that stuff, it’s kind of endless fun.”

How much of that you can really capture – some of what you do is intentional and other parts are unintentional – is still an experiment. But these soils do lead to some “magic” with the plants, Gaunt said: He’s even tested tomatoes in the greenhouses of Cornell, where the tastes of each could differ based on the types of soils they grew in.

Using that on the Commons, at least, is a valuable teaching moment on the more intricate aspects of the local environment.

“We’re really applying quite high level scientific understanding in a down-to-earth, practical way,” Gaunt said.

 Follow Nick Reynolds on Twitter @Nickthaca 

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PARB awards Rs 21.9 million project to GCU for crop improvement

13 October, 2017
 

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Remedy in sight to end straw burning in northern India?

13 October, 2017
 

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Biochar

14 October, 2017
 

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14 October, 2017
 

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About Us | Carbonsyte | BCT&E, Inc.

14 October, 2017
 

Carbonsyte is biochar, or biomass charcoal that comes in various types. Some examples:

Biochar is an amazing material and brings properties to soil that cannot be achieved with other traditional soil amendments. However, it is part of a dynamic living system and needs to perform in conjunction with the other soil constituents, the soil microbiology and, above all, the growing plants. A synergistic relationship can best be established when adding biochar to an existing growing system. No matter how it is presented, adding biochar to an existing soil introduces “change” into the existing soil and any ongoing plant growth. While the ultimate benefits of adding biochar will manifest over time.

Biochar that is made from clean agricultural residues, woody Bio-Mass material, leaves and grass stalks, is generally very safe for introduction into the soil if it does not have an odor, meaning it was heated to a high enough temperature to convert the biomass to stable carbon, and has relatively low ash, meaning all the stable carbon was not burned out of the char. Excess ash tends to appear as a gray dust – good biochar will show virtually none of that.

Pyrolysis transforms the vegetable portion of the starting biomass into a new solid form, chemically like graphite, but physically mostly open space or voids. Most importantly, the organic portion of the original biomass is converted into new molecular structures that have different properties compared to the starting biomass, including pronounced resistance to breakdown by biological processes in the soil. The mineral portion remains essentially the same, and is distributed wherever it was in the original biomass. The water leaves and there is rarely enough “animal” material to concern ourselves with, so combining these simultaneous changes gives us the essence of what happens when biomass is pyrolyzed into biochar.

The long term impact provided by Bio-Char is dominated by the water-insoluble and essentially permanent graphitic microporous structure, created out of the original plant biomass and transformed by pyrolysis into the biochar. The result is a material that transforms the soil into a cleaner and more productive environment for both the soil biota and the plants being grown. These desirable qualities allow the biochar to have maximum efficacy in benefiting the growing system and that benefit will last for a very long time in the soil.

BCT&E, Inc.

802 N. Irwin St. Ste. 204
Hanford, CA 93230

Phone: 559-816-8651

Fax: 559-582-2837
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Ibi biochar

14 October, 2017
 

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Customer reviews

14 October, 2017
 

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Global Biochar Market 2017-2022: Diacarbon Energy, Biochar Now, Agri-Tech Producers and …

14 October, 2017
 

The objective of “Biochar industry” report is to enlighten the users with the crucial aspects of global Biochar market presenting the fundamental market overview, up-to-date Biochar market trends, past, present and forecast data related to the Biochar market from 2017-2022. A complete analysis of the Biochar based on definition, product specifications, Biochar market gains, key geographic regions and imminent Biochar players will drive key business decisions.

Global Biochar market report presents a thorough and latest market insights in the form of graphs, pie-charts, tables to provide clear picture of the Biochar industry. Global Biochar report is divided into different chunks based on the Biochar type, diverse Biochar applications, key geographical regions, Biochar market share of each player, supply demand ratio, and their production volume.

Further, Global Biochar report analyses the development opportunities as well as the threats to the Biochar market, business tactics, sales volume and latest developments taking place in Biochar. Details such as the product launch events, Biochar industry news, growth drivers, challenges and investment scope have been analyzed at depth in Biochar research report.

Enquire for Biochar report here: https://market.biz/report/global-biochar-market-gir/29647/#inquiry

Global Biochar report segmentation is as follows:

The complete Biochar market is categorized on basis of key manufacturers, various applications, different types and distinct geographical zones. Leading Players involved in global Biochar market involves Agri-Tech Producers, Kina, Nanjing Qinfeng Crop-straw Technology, The Biochar Company, Liaoning Jinhefu Group, Seek Bio-Technology (Shanghai), Hubei Jinri Ecology-Energy, Carbon Gold, Swiss Biochar GmbH, BioChar Products, Cool Planet, Carbon Terra, ElementC6, Vega Biofuels, Diacarbon Energy, Pacific Biochar, Biochar Now and BlackCarbon.

Type wise analysis divides global Biochar market into Corn Stove Source Biochar, Rice Stove Source Biochar, Wheat Stove Source Biochar and Wood Source Biochar. Application wise analysis classifies the global Biochar market into Soil Conditioner and Fertilizer.

Global Biochar report is partitioned into different section as follows:

The first section of the Global Biochar market report enlists the basic details of the industry based on the fundamental overview of Biochar, introduction, major Biochar market vendors, their business profile, sales margin, Biochar demand and supply scenario and the revenue during 2016 and 2017. The second section of the Biochar report individually lists the sales revenue of each Biochar vendor and their development scenario based on sales revenue.

Third and fourth section of the report elaborates the Biochar details based on product manufacturing regions and Biochar revenue generated during 2012-2017. Fifth, sixth, seventh, eighth and ninth section of the Biochar report presents a detailed information stating the major countries and region wise Biochar revenue generation during the period from 2012-2017.

Section number ten and eleven lists the Biochar applications and market statistics during 2012 to 2017. Section number twelve, thirteen, fourteen and fifteen enlists the forecast Biochar market data related to development scope, Biochar market trends, key vendors, emerging Biochar market segments, facts and figures along with useful conclusions, data sources, and Biochar appendix.

Click here for sample report: https://market.biz/report/global-biochar-market-gir/29647/#requestforsample

In conclusion global Biochar market report serves as a valuable guide for understanding important Biochar industry insights and the company data like latest Biochar market statistics, revenue generated from sales, Biochar key players analysis and the growth forecasts based on present and past Biochar data.

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Bio Char

14 October, 2017
 

Azomite…

Peat moss is a gardening staple as a soil conditio…

No matter your growing goals, worm castings can he…

This is why Coco Coir is beneficial…


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bbf biochar cic

15 October, 2017
 

Registered Number: SC447026 – Company ID

Status: Active

Date Incorporated: 08/04/2013

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Biochar for your Garden and the Planet

15 October, 2017
 

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Biochar

15 October, 2017
 

POPULAR POST

proud to be a member of the bbf

biochar pile with usda biobased product label

biochar

the production of biochar creates liquid and gas byproducts that can be converted to biooil or biogas and used as alternative forms of

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another study that looked at biochar in relation to tropical soils found biochar to increase the ability of both fungal and bacterial

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biochar produced from pine needles is quite effective in removing naphthalene and from water another study indicates that

the bright prospect of biochar

figure 2 influence of different biochars and biochar rates on seed germination and seedling growth from a study by solaiman et al uwa

members of the rechar team with david guerena 3rd from left cornell university in front of maize treated with biochar at a field site in kenya

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biochar is found in soils around the world as a result of vegetation fires and historic soil management practices intensive study of biocharrich dark

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biochar is found in soils around the world as a result of vegetation fires and historic soil management practices intensive study of biocharrich dark

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over 12 weeks each biocover was evaluated for its at reducing odor the biochar could have a future use as a soil amendment

lowcost biochar production technology to improve soil quality for crop production

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biochar is a relatively new term for charcoal used as a soil additive however the idea of charred matter into soil is centuries old

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biochar is a relatively new term for charcoal used as a soil additive however the idea of charred matter into soil is centuries old

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the jury is still out on the soil amendments but early field trials suggest that burying charcoal in soil can increase yields reduce water use

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one of two winter squash beds on the slope is an biochar bed after digging out a 10inch deep 2x6foot wide trench we filled it with

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black owl biochar

video thumbnail for johannes lehmann finds key to new energy soil fertility in biochar

the concept for biochar came from studying rich amazonian soils produced by the practices of indigenous peoples there

figure 2 influence of different biochars and biochar rates on seed germination and seedling growth from a study by solaiman et al uwa

current biochar research in peru

bamboo biochar 5kg

biochar in cover

innovations in renewables negative emissions tech can more trees carbon capture or biochar solve our co2 problem

figure graphic 2

dolph cooke biochar making for farm scale with the moxham open barrel kiln the

fine mesh biochar

the three biochars a b and c used in the study and the growth substrates made with them image courtesy of reza nemati

biochar production as renewable energy

the biochar revolution agriculture u0026 environment

biochar

another study that looked at biochar in relation to tropical soils found biochar to increase the ability of both fungal and bacterial

rock dust u0026 biochar

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over 12 weeks each biocover was evaluated for its at reducing odor the biochar could have a future use as a soil amendment

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macadamia nut biochar

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biochar

figure graphic 2

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richmix biochar

biochar in scenarios involving forestry a processing of minor ashrich fractions of trees grown mainly for bioenergy using pyrolysis

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how can biochar be carbon negative

biochar compost

kis organics biochar soil mix vegetable potting mix

hazelnut biochar

it is the biochar initiative of cornell university that started promoting that technology around 10 years ago and has shown that biochar

bbp no2 diagram

biochar produced from pine needles is quite effective in removing naphthalene and from water another study indicates that

biochar pile with usda biobased product label

about biochar

into a biochar product similarly even the same material can vary across different sources with factors such as moisture content

cover featuring an abstract arrangement of a microscope image of biochar a

biochar

biochar granules from 940

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members of the rechar team with david guerena 3rd from left cornell university in front of maize treated with biochar at a field site in kenya

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charcoal bio char


Face Rf Protable

15 October, 2017
 

Copyrights © 2017 Vet Research. All rights reserved.


Roscoe saved his home from a wildfire in 2008, but not this time

16 October, 2017
 

Partly cloudy.

Partly cloudy skies. Areas of smoke and haze are possible, reducing visibility at times. Low 48F. Winds light and variable.

This is what is left of the Roscoe family’s house in the hills behind Wild Horse Valley Road after the Atlas Fire. Ned Roscoe successfully defended the house from a wildfire in 2008, but not this time.

This is what is left of the Roscoe family’s house in the hills behind Wild Horse Valley Road after the Atlas Fire. Ned Roscoe successfully defended the house from a wildfire in 2008, but not this time.

For Ned Roscoe, the second time was not the charm.

In June, 2008, Roscoe stayed up all night battling to save his home above Wild Horse Valley Road from a wildfire that would end up consuming 3,500 acres.

Using a chainsaw, a pole saw and lopping shears, he beat back two waves of flames that came at him through wild grasses, then the tree canopy.

Come dawn, he was very lucky, Roscoe said in a Register news story recounting the drama of that night. He’d broken every piece of equipment he had at about the time the fire lost its punch and the wind diminished.

This time was different.

Roscoe, who works for a vineyard management company, said he knew things were bad last Monday, the first day of the Atlas Fire, when the fierce wind began knocking over microbins of grapes weighing nearly 100 pounds in the Rutherford area.

That night when he drove up Coombsville and Wild Horse Valley roads on his way home, the smoke from the approaching Atlas Fire “smelled different” than the fire he remembered from 2008, he said.

At 8 p.m., he got a call from his landlord in Houston who had just received a Nixle alert that the Atlas Fire was close to overrunning his cabin. “He said, ‘You got to get!’” Roscoe recounted.

Knowing of the devastation that the Atlas Fire had already caused in the Soda Canyon and Silverado areas, Roscoe said he decided not be a hero a second time.

“I picked up the dog, I got in the car and I went to Sacramento,” said Roscoe, whose wife was out of the state when all of this came down.

Ned got the word at week’s end from his father John who managed to make it back to the house. His dad didn’t waste words: “You have a chimney and your dog has a watering dish,” Roscoe said his father told him.

As another fire victim told a San Francisco Chronicle reporter, Roscoe said he also had a “lifetime supply of biochar.”

Roscoe said he always knew he was living in a high-risk rural area. The 2008 fire convinced him of that.

Yet his home had gone 80 years prior to that without a wildfire. He figured that the 2008 fire, by clearing the landscape, had bought him many decades of peace of mind.

“I guess I was wrong about that,” he said.

Roscoe and his wife Jane, who have three children out of the home, are now living with friends in Napa and have a lead on a cottage in town.

He said he’s trying to be philosophical about the loss of their home and personal possessions.

“It’s freeing to me to be free of this stuff. People meditate to be free like that,” Roscoe said with only a trace of humor.

Jane was capable of deadpan humor herself. “You know all that stuff you have in storage?” he said she told him. “I wish you’d have kept it in the house.”

Roscoe said his dad and his mother, Marilyn, were also made homeless by the fire. They occupied a nearby, ultra-modern hilltop house of glass walls on Twin Sisters Road that overlooked Fairfield. That house is no more, he said.

Roscoe said he is working to not have this experience cast a pall over his family. “People have the experience they want to have,” he said.

He and his wife escaped the fire without injury, they’ve found refuge in the town they love among the people they love, he said.

And another thing. The Roscoe cat was picked up by firefighters and returned to them, he said.

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Application of biochar-based catalysts in biomass upgrading

16 October, 2017
 

Biochar is a low-cost carbon-rich material derived from the thermochemical degradation of biomass. Due to its unique chemical structure, biochar with a large surface area and tailored surface functional groups can be easily prepared by activation and/or functionalization, and shows great potential to be used as a versatile catalyst and/or catalyst support in many chemical processes. However, the application of biochars as versatile catalysts and/or catalyst supports for biomass upgrading has not been systematically overviewed so far. In this work, the formation of pyrochar and hydrochar is proposed, and the activation and/or functionalization of biochar are also included. Subsequently, the application of biochar-based catalysts in biomass upgrading, including biochar-based solid acids for biomass hydrolysis and dehydration, biochar-based catalysts for biodiesel production, and biochars as catalyst supports for biomass pyrolysis, gasification, and bio-oil upgrading, are discussed in detail.

The article was received on 22 Aug 2017, accepted on 12 Oct 2017 and first published on 16 Oct 2017

This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. Material from this article can be used in other publications provided that the correct acknowledgement is given with the reproduced material.

Information about reproducing material from RSC articles with different licences is available on our Permission Requests page.


Biochar comparison essay

16 October, 2017
 

Ethan : October 17, 2017

RT @Left_News Bolivarian Venezuela at the crossroads (in 4 parts) – || Not brand new essays, but still worth a read.

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Overheard The New Yorker: Chavez – Fidel’s Heir: Reporting & Essays: Venezuela’s oil money has br..

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I’m screaming my earth science essay is 3 1/2 unedited pages help

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Whooo! First politics essay done! Week and a half of reading, half a week writing, 13 pages, 15 references, 103 citations, and 2794 words.

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Short Essay on ‘Narendra Modi’ (340 Words)

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Just wrote an essay on how money is not everything in life, even though I believe the opposite haha


Worm castings-based growing media with biochar and arbuscular mycorrhizal fungi for producing …

16 October, 2017
 

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Macnut biochar

16 October, 2017
 

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Biochar research paper

16 October, 2017
 

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So finished my 250 pg midterm book this morning at 6 & gonna write the 10 page essay(duetmrrw) for it after my 8 am lol hmu for ed planning

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Watching An Inconvenient Truth to do my geography essay ft. Al Gore

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Cordyceps kills cancer, research paper. It is not new, there is an attempt at nature creation towards. …

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Fri 9/25: Begin prewriting for narrative essay . Ss tell the story of important event to you.

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Robinson’s great new essay is just as much an attack on economic determinism as it is a defense of public education. …

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Chicanos stay writing me long essays in condescending tones, as if I even value their MECHA opinions.

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Biochar comparison essay

16 October, 2017
 

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Please check out some of my research papers on Mindfulness here. Đây là những bài nghiên cứu, xin mời đọc….

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NIKKI GIOVANNI: An essay on the development of her small business

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Sunflower essay

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Biochar as an adsorbent for inorganic nitrogen and phosphorus removal from water

16 October, 2017
 

Biochar is the solid product of biomass pyrolysis that can be used for carbon sequestration, soil amendment, and pollution remediation. The use of biochar as an adsorbent for the removal of water contaminants has elicited increasing interest due to the multifunctional properties of this material. The application of biochar in the adsorption of inorganic nutrients from eutrophic water has not been reviewed. This review focuses on recent research on the use of biochar for the adsorption of inorganic nitrogen (ammonium and nitrate) and phosphorus (phosphate) from water, especially for the main influence factors and mechanisms for nitrogen and phosphorus adsorption on biochar.

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20 Bags Super Biochar Amazon Organic Soil Conditioner nutrients hydro

16 October, 2017
 

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Loveland Business Briefs

17 October, 2017
 

The Anheuser-Busch Metal Container Corp. will celebrate the 30th anniversary of its can plant Thursday.

The event will take place at the facility, 1201 Metal Container Court in Windsor, and is limited to employees and their family members.

The factory can make as many as 6 million aluminum cans in 24 hours and more than 2 billion in a year, according to a press release. The cans are used for a variety of beer and soda products.

• Pathways Children’s Healing Garden, to be built at Pathways Hospice‘s Fort Collins location, has received a donation of $83,919 raised by Pathways’ 16th annual A Vintage Affair event hosted by Wilbur’s Total Beverage.

Woodward Inc. of Fort Collins has been awarded a $36,159 contract from U.S. Naval Supply Systems Command Weapon Systems Support for the repair and modification of mechanical actuators.

Gracon LLC of Loveland won a $2.42 million contract from the U.S. Army Corps of Engineers to repair a service bridge and replace a gate and frame seals in Valliant, Okla.

• The Colorado Small Business Development Center will hold its second annual Northern Colorado Women’s Business Conference from 7:30 a.m. to 6 p.m. Nov. 2 at The Ranch events complex. Tickets cost $75 and include breakfast and lunch. Register at: www.coloradosbdc.org/events/NoCo-womens-conference

• Dr. David Banford of Associates in Family Eyecare, 2249 W. Eisenhower Blvd., Loveland, recently welcomed two new optometrists, Dr. Jennifer Everett and Dr. Corey Bernhardt. Phone: 970-669-4587.

Sabrina Nowling of Cornerstone Home Lending’s Fort Collins office has been awarded the 2017 Aksel Nielsen Award by the Colorado Mortgage Lenders Association. Nowling was recognized for her commitment and service work on the CMLA board of directors. Nowling has been a part of the mortgage industry for the past 26 years.

• Loveland optometrist Dr. Roger Hulme, has relocated his office. The new address is 3850 N. Grant Ave., Loveland. Phone: 970-667-5511.

Kyle Kirkpatrick of Loveland has developed a moldable earpiece system for which his company, Decibullz, was issued a patent.

John Schenk of Fort Collins and Thomas Gilligan of Fort Collins were members of a team that developed antimicrobially active compositions. CHD Bioscience of Fort Collins and X.Y. LLC of Navasota, Texas, have been issued a patent.

James Gaspard II and William Beierwaltes of Loveland and Mikel Olander of Johnstown were part of a team that developed an “airflow control and heat recovery in a managed kiln.” Loveland-based Biochar Now has been assigned a patent.

Michael Schott of Loveland was part of a team that developed a “fluid parameter sensor and meter.” A patent has been issued to Longmont-based , Concentric Meter.

James Frens of Berthoud was a co-inventor of an adjustable control arm. A patent was issued to Specialty Products Co. of Longmont.

Oct. 16

NoCoNet, the Northern Colorado Networking Group, will have its fall job fair at Faith Evangelical Church, 3920 S. Shields St., Fort Collins, 10:30 a.m. to 12:30 p.m. A special session for veterans and NoCoNet members will start at 9:30. The free event will feature more than 30 employers that are actively recruiting for open jobs. For details, go to www.noconet.org.

Oct. 17

• Loveland Chamber of Commerce ribbon-cutting for Foothills Credit Union, 4:30-5:30 p.m.; 746 N. Cleveland Ave., Suite 206, Loveland.

Oct 19

Thompson Education Foundation’s free Education Is Everyone’s Business breakfast, 7 a.m., Embassy Suites Loveland. Call Kim Akeley-Charron, 970-613-5074, or go to thompsontef.org.

Oct. 24

Home Builders Association of Northern Colorado and the Aspire Institute workshop on advanced business practices for residential general contractors titled “Where Does Profit Really Come From?” The workshop will take place from 10 a.m. to 4:30 p.m. at the Fort Collins Marriott, 350 E. Horsetooth Road. Price: $295 per company, $145 for NOCO-HBA members. Call 888-252-8998; register at theaspireinstitute.com/workshop.

• Loveland Chamber of Commerce ribbon-cutting for Marrom Bombon Brazilian Delicacies, 4:30-5:30 p.m.; Chamber of Commerce office, 5400 Stone Creek Circle, Loveland.

Send us your business news

The Reporter-Herald strives to include newsworthy business briefs for its readers each Sunday. The focus of business briefs is on Northern Colorado businesses, not business promotions.

The items we consider for briefs include:

• New businesses.

• Business relocations.

• Business closings.

• New contracts.

• Anniversaries (divisible by five).

• Mergers and acquisitions.

• New owners, employees or promotions of employees.

• Manufacture of new products.

• Business organization meetings, workshops, seminars or classes meant for networking or education.

• Open houses related to newsworthy events (new business, anniversary, new owners, renovations, new management, etc.).

• Awards or other recognition.

• Donations to charities.

• Earnings.

Press releases are welcome. The Reporter-Herald reserves the right to edit information submitted for publication. Pictures of individuals involved in the event are welcome, but publication is not guaranteed.

Information is due by noon Wednesday for publication in the following Sunday’s business section. Information can be emailed to news@reporter-herald.com. For more information, call Business Reporter Craig Young, 970-635-3634.

Reporter-Herald staff


Biochar as a Building Material

17 October, 2017
 

Associate Professor and Assistant Dean (Academic)

School of Design and Environment

National University of Singapore

A by-product of pyrolysis of biomass, biochar has been widely studied as a type of soil enhancement and even a replacement of carbon nanotubes in a wide range of applications, including as capacitors and sensors.

 

The Smart Materials Laboratory of the Department of Building, National University of Singapore, has been working on producing and studying a wide variety of sustainable building materials that utilize biochar as a key ingredient. For example, increase in strength and decrease in water absorption of mortar and concrete have been achieved by adding up to 2% wt of biochar that is produced from mixed wood wastes. Current efforts include the use of food waste as a viable feedstock for biochar that is used to enhance the performance of mortar, as well as using biochar as a mean of immobilizing special species of microbes that are capable of self-healing of cracks in concrete.

 

The aim of this seminar is to trigger more conversation and thinking on using biochar in a wider range of building materials and technology, including the use of biochar in additive manufacturing of building components.

Associate Professor Kua is the Assistant Dean (Academic) of the School of Design & Environment of the National University of Singapore. He is also the leader of the Smart Materials Laboratory of the Department of Building.

 

He obtained his PhD in Sustainable Building Technology and Policy from the Building Technology Program of MIT, where he also earned two Masters in Civil Engineering and Technology & Policy.

 

His key areas of research are life-cycle sustainability assessment and bio-based building materials. He has authored about 100 academic publications, and has won more than 50 international/national academic awards. He has also been invited by local and international organizations to deliver guest lectures and speeches on his research topics more than 50 times, including as a plenary speaker at the Forum for Science, Technology and Innovation for Sustainable Development (organized by the International Council for Science) at Rio+20. He consults for the Singapore Government on various environmental issues and has assisted several multi-national corporations to set up their corporate sustainability guidelines.

 

Hosted by: Assistant Professor Hayden Taylor, 6159 Etcheverry Hall, 510- 642-4901, hkt@berkeley.edu

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IBI Educational Webinar Series: Synergies between Anaerobic Digestion & Biochar

17 October, 2017
 

Research has shown that there are many synergies to be found integrating pyrolysis and gasification with anaerobic digestion (AD) systems.  Carbonizing the anaerobic digested fibers could be a viable way to create adsorbent for the removal of soluable phosphorous from Anaerobic digesters effluents.  Using biochar in the AD substrate can boost not only the quyantity but the quality of the methane (CH4) produced.  It can also reduce the H2S generated during the AD process thereby reducing wear and tear on equipment.  In the webinar we will discuss the possibilities to integrate acidic biochars with dissolved air flotation systems for ammonia removal.  The focus of this webinar is on pyrolysis and gasification, two technologies that are capable of converting the digested fibers into a bio-char, and that can be integrated with AD.  During the presentation Dr. Garcia-Perez will also discuss some of the potential uses of these chars in anaerobic digestion systems.

Registration includes access to the slides and a recording of the webinar.

IBI Members: Click here to register via the Members' Only website.  Upon successful registration via the Members' Only website (go to 'Upcoming Webinars' section), your event link will be emailed to you following confirmation by staff of your membership status.

IBI Non-Members: Click here to register.  An online payment page will accompany your registration.

Speaker: Dr. Manuel Garcia-Perez
Dr. Manuel Garcia-Perez is an Adjunct Professor at Washington State University's Chemical Engineering and BioEngineering Department.  His focus is on biomass thermochemical conversion (torrefaction, pyrolysis, gasification and combustion); development and testing of new bio-oil refineries to produce advanced bi-fuels and bio-chemials; environmental impact of thermochemical processes research addresses the environmental burden associated with the world's declining petroleum resources.
 

For more information or if you have any questions about registration please email Vera Medici at vmedici@ttcorp.com.  Visit our membership page to help support IBI.


This ingenious approach not only binds CO2, but also improves the soil

17 October, 2017
 

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Foodbank farm in funding plea to community

17 October, 2017
 

A foodbank farm in Bo’ness, which was targeted by vandals last month, is hoping to receive a boost through a crowdfunding campaign.

A JustGiving page was set up to support Sustainable Thinking Scotland co-directed by Sean Kerr and Steve McQueen, which hopes to generate £1000 to back the group’s effort in growing local fruit and vegetables to donate to the Bo’ness Storehouse.

The group suffered a setback when senseless louts trashed the garden and stole equipment at the site at the Kinneil Walled Gardens sometime between September 11 and 15.

At the time Sean said: “These families are the ones who need it the most. This mindless destruction is beyond the line and they are hurting their own people.”

It was not the first time the garden had been vandalised as people have broke in before and damaged equipment and property.

Nevertheless, the group have vowed to keep on fighting and supporting the local cause and hope that the community can back them too.

They said: “By growing fruit and vegetables locally we hope to offer a model which combats the issues faced by foodbanks and aids in the provision of these much-needed services.

“We hope to combine our food production with other aspects of the project, such as our composting programme and the production of biochar from woodland waste, which will allow us to minimise running costs and sustain the project long into the future.”

To donate visit https://www.justgiving.com/crowdfunding/sts-foodbank-farm.

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Biochar

17 October, 2017
 

Make It Green considers agriculture as a fundamental tool that can sustainably empower the world’s economies while addressing simultaneously the UN millennium goals with guidance to the principles of sustainability. Based on these principles of sustainability, we identify biochar and processes involved within its productions of prime opportunity to bridging challenges in the world’s agricultural settings.  

Make It Green has therefore embarked on development of biochar based agricultural technologies with cost effective measures to effect positive changes especially in developing countries. For more information on biochar and agricultural benefits read below.

As a soil enhancer, biochar makes soil more fertile, boosts food security, preserves cropland diversity, and reduces the need for some chemical and fertilizer inputs.

Biochar improves water quality by helping to retain nutrients and agrochemicals in soils for use by plants and crops, resulting in less pollution.

Biochar production offers a simple, sustainable tool for managing agricultural wastes. A combination of waste management, bioenergy production, and sustainable soil management can succeed with an approach involving biochar.

By converting agricultural waste into a powerful soil enhancer with sustainable biochar, we can preserve cropland diversity and discourage deforestation.

Energy is the major tool apart from agriculture that can boost economies and help to shape the investment profile of any economy. However, due to the negative environmental effects of fossil fuels, everyone has this “puzzle” feedback while considering future prospects. Make It Green and our founding principles are also puzzled by these negative effects to humans coupled to their non-renewability and non-accessibility and distribution. Our Pyrolytic, gasification and heating processes involved in biochar production from small scale to large offers a huge opportunity to keep moving and getting out of the puzzle.

Sustainable biochar can be used now to help combat climate change by holding carbon in soil and by displacing fossil fuel use. Research shows that the stability of biochar in soil greatly exceeds that of un-charred organic matter. Additionally, because biochar retains nitrogen, emissions of nitrous oxide (a potent greenhouse gas) may be reduced.

Turning agricultural waste into biochar also reduces methane (another potent greenhouse gas) generated by the natural decomposition of the waste. This powerfully simple tool can store 2.2 gigatons of carbon annually by 2050. See more information on biochar and carbon sequestration potential right here.

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© 2017 Make It Green Solutions AB


Make It Green – Sustainable biochar products

17 October, 2017
 

Biochar product that is stable for the future.

© 2017 Make It Green Solutions AB


Bio char research papers

17 October, 2017
 

Ryan : October 18, 2017

I can’t breathe because the oxygen is too thin that’s why I need you here to share your air with me so we can belong together. Essay done 😉

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UCC Researchers Advocate Biochar for Farmers

17 October, 2017
 

A group of researchers from the College of Agriculture and Natural Sciences (CANS) have advocated the use of biochar in vegetable production.

Biochar is a charcoal product that is produced from plant matter and stored in the soil.

According to the researchers, biochar is widely known to improve water, reduce soil acidity and retain soil nutrients for plant and crop utilization. They made this known during a one-day Farmer Field Day held at the UCC Technology Village.

The ongoing research, led by Dr. Kwame Agyei Frimpong of the Department of Soil Science, is being funded by the Directorate of Research, Innovation and Consultancy (DRIC). The researchers noted that when farmers adopt biochar, deforestation would become a thing of the past.
 
Presenting partial findings of the research to some selected Small Holder Farmers, a member of the team, Dr. Martin Bosompem, said that the use of charcoal to improve soil fertility started in some parts of Brazil several years ago. He added that biochar could be created from a wide variety of feed stocks, including corn cobs, rice husk, cocoa husk, cow dung, poultry manure, saw dust, among others. He pointed out that residue of household charcoal could also be used for the production of biochar.
 
 Consequently, he explained to the farmers that since biochar could be made from numerous feedstock and in different ways, its characteristics and impact on plant health could vary. He indicated that the effects of biochar on farmlands would be felt for many years and farmers could enjoy its immense benefits for a long time, stressing that “Biochar is cost effective as compared with the price of chemical fertilizer”. He took participants through the process of creating biochar and later took them to the farm at the Technology Village to show them crops with biochar application and crops without biochar.

However, it was observed that crops planted on the same day with biochar had grown better than those without biochar. He advised farmers to use safety tools such as nose masks, goggles, gloves, among others, when applying biochar on their farmlands.

The lead Researcher, Dr. Kwame Agyei Frimpong, said the aim of the research was to educate farmers on the need to maintain soil fertility with the use of biochar.
At the end of the research, Dr. Frimpong said the team hoped to find out the rate of biochar that would be applicable to different soils under different conditions and variety of crops. He said the team would also assist farmers on how they could produce biochar cheaply and apply them easily on their farmlands.

He called on farmers to take soil fertility seriously and seek professional guidance on fertilizer, compost and biochar applications. He appealed to them to form an association to champion their cause.

The participants also expressed gratitude to the research team for the eye opener and appealed for more education on how to preserve the land with biochar.
 


carbon slurry method in laos

17 October, 2017
 

Sonic Biochem is a prime manufacturer of Industrial Grade Soya Lecithin Liquid is used in Printing Ink, Premier Paints, Water based paints, Latex Based Paints

This section introduces a range of climate-smart agriculture (CSA) practices and technologies within seven entry points for CSA; soil management, crop

German Classification English Designation Volatiles % C Carbon % H Hydrogen % O Oxygen % S Sulfur % Heat content kJ/kg; Braunkohle: Lignite (brown coal)

Claims about the environmental benefits of charring biomass and applying the resulting biochar to soil are impressive. If true, they could influence

Note: If more than 24 hours have elapsed between coats, the coated surface must be mechanically abraded before topcoating. Curing time varies with surface temperature

Guidelines for Biochar Application to SoilInternational Biochar Initiative Page 3 Table of Contents 1. Purpose

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Short-term effects of maize residue biochar on phosphorus availability in two soils with different phosphorus sorption capacities

A potential bioconversion of empty fruit bunches into organic fertilizer using Eudrilus eugeniae

Materials technology is vital to industrial competitiveness and innovation across all sectors including healthcare and the environment.


Awesome Biochar Kiln

17 October, 2017
 

The inspiring Awesome Biochar Kiln photograph above is a section of article, assorted under Home Design, publicized at 2017-09-11 07:05:35 by admin. This inspiring Awesome Biochar Kiln tagged with Biochar Kilns For Sale‚ Biochar Kiln For Sale Uk‚ Biochar Kiln Australia and Home Design`s

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40 Organic Garden in a Can

18 October, 2017
 

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Biochar Making Machine

18 October, 2017
 

Copyrights © 2017 My Psdc. All rights reserved.


Global Biochar Market to Hit a Total Revenue of $3297 Million by 2025

18 October, 2017
 

img

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This insightful market research report from Inkwood Research focuses on market trends, leading players, supply chain trends, technological innovations, key developments, and future strategies. With comprehensive market assessment across the major geographies such as North America, Europe, Asia Pacific, and Rest of World the report is a valuable asset for the existing players, new entrants, and the future investors. The study presents detailed market analysis with inputs derived from industry professionals across the value chain.

Biochar market scenario

Increasing biochar applications in the agriculture sector is the key driver proliferating the growth of the Biochar market. An important fact that biochar aids in carbon sequestration and reduces greenhouse gas emissions also becomes one of the major reason for increasing the demand for the Biochar. Lack of awareness, restricted production capacity due to technological barriers, and business investments interrupted due to financial restraints are the major factors declining the growth of the market.

The Biochar Market report provides data tables, includes charts and graphs for visual analysis.

Market Segmentation

  • Slow pyrolysis
  • Fast pyrolysis
  • Gasification
  • Intermediate pyrolysis
  • Hydrothermal carbonization
  • Microwave pyrolysis
  • On the basis of feedstock, the global Biochar market is segmented as follows:

  • Agriculture and livestock
  • Air, soil, and water treatment
  • Horticulture
  • Industries
  • Companies Profiled

    -Diacarbon Energy Inc.

    -Avello Bioenergy

    -Biochar Supreme

    -Tolero Energy

    -Cool Planet Energy System

    Related Reports

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    Project Database

    18 October, 2017
     

    To design, build, and test a self-contained system that can pyrolyze (decompose organic material at high temperatures without oxygen) human solid waste into a type of biological charcoal (biochar) that captures and stores carbon.

    In the Reinvent the Toilet Challenge (RTTC), researchers from all over the world are challenged to come up with a radical new technology for treating human waste, and eventually making it accessible for the whole world. Just treatment is not enough though; the solution has to be affordable, and has to produce valuable elements from the waste – either energy, clean water, nutrients, or all. Phase 1 of the RTTC was aimed at proving the feasibility of the technology; in August 2012, a working prototype of the biochar reactor was demonstrated at the Reinvent the Toilet Fair at the headquarters of the Bill & Melinda Gates Foundation. Together with Sanergy in Nairobi, the technology will be developed further to make it ready to process human waste on a large scale in Kenya.

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    Do my report on biochar now

    18 October, 2017
     


    Commercial Grade Bulk Biochar

    19 October, 2017
     

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    BIOchar Infused with Worm Castings

    19 October, 2017
     

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    Global Biochar Market Outlook 2017 : , Kina, Biochar Now, Cool Planet, ElementC6 and The …

    19 October, 2017
     

    Global Biochar Market report offers useful market strategies based on market scope, market growth, product applications and Biochar production revenue. This report is segmented based on top Biochar market players, key geographical regions and Biochar product type. Primarily, the Biochar research report presents the product definition, application, industry overview, competitive landscape study. A competitive scenario is portrayed on the basis of revenue, Biochar production capacity, market share and consumer volume. Biochar marketing strategies and continuous innovations taking place in Biochar industry will lead to huge growth in Biochar. This report offers growth opportunities, Biochar sales margin, import/export details, industry policies and latest developments taking place in Biochar. Forecast information related to emerging Biochar market segments, expected growth, competitive scenario among leading players, Biochar consumer volume are presented in this report.

    All the major regions contributing to the Biochar markets like North America, Europe, India, Japan, China, South America, Middle East and Africa are covered in this report. The global Biochar report shows the competitive landscape view based on the target customers, revenue generation, Biochar market scope and production capacity. All the details related to the cost of raw materials, downstream buyers, gross margin analysis, utilization ratio, Biochar manufacturing cost are enlisted in this report. The analysis of Biochar market dynamics, market presence, raw materials involved, Biochar manufacturing cost is mentioned in the report. Global Biochar report individually studies Biochar market share and value on basis of product type, region, and applications. Every minute details related to Biochar development and past market scenario along with the development opportunities and risk factors are covered in this report.

    Fill the inquiry form to get sample copy of report https://market.biz/report/global-biochar-market-2017-mr/154863/#inquiry

    Global Biochar Market Segregation into ( Manufacturers, Product Type and End-User Applications )

    Top manufacturers influence the Global Biochar Market are Cool Planet, Swiss Biochar GmbH, Hubei Jinri Ecology-Energy, Nanjing Qinfeng Crop-straw Technology, Seek Bio-Technology (Shanghai), Biochar Now, Carbon Terra, Kina, ElementC6, Liaoning Jinhefu Group, BlackCarbon, Agri-Tech Producers, The Biochar Company, Carbon Gold, Pacific Biochar, BioChar Products, Vega Biofuels and Diacarbon Energy.

    Based on product type Corn Stove Source Biochar, Wood Source Biochar and Rice Stove Source Biochar.   

    Based on end-user applications Fertilizer and Soil Conditioner.

    Download The Sample Copy of Global Biochar Market at  https://market.biz/report/global-biochar-market-2017-mr/154863/#requestforsample

    Fundamentals Global Heavy Duty Trucks Market

    In the first portion, the Biochar report presents the industry survey, product description, price, variety of applications, Biochar market demand, market volume and Biochar market development forecast from 2012-2022. Biochar Market is divided according to regions, product classification, and Biochar application. Biochar is reviewed based on growth factors, risk assessment, Biochar market dynamics and emerging market sectors. This report also shed lights on Biochar development opportunities and threats to the market growth.

    In the second portion, the report describes the industry chain structure and competitive scenario of Biochar industry, enlisting the top Biochar players, their market volume, raw material analysis of Biochar, labor cost, manufacturing cost, Biochar sales channels and downstream buyers.

    In the third portion, complete analysis of Biochar market share based on product type, utilization ratio, supply and demand scenario, Biochar import/export details and Biochar gross margin analysis is done. Region-wise Biochar study based on consumption volume, market presence, revenue and the forecast details from 2017-2022 is covered.

    In the fourth portion, Region wise SWOT analysis of major Biochar players is conducted to help the market aspirants in identifying the Biochar opportunities and threats. The entire study of Biochar competitive scenario, key players, manufacturing capacity, target consumers and Biochar market volume forecast from 2017-2022 is presented in this report.  

    In the fifth portion, investment feasibility study is conducted to help the readers in evaluating the Biochar barriers and useful research findings and conclusions are covered. 

    To conclude with, Global Biochar Market report is a complete guide to understand the market trends and plan the business accordingly. 


    biochar production equipment

    19 October, 2017
     

    Welcome to Marco's blog!

    If you have a business that is geared toward recycling, and you have access to a substantial amount of biomass on a regular basis, you may want to consider purchasing a pyrolysis plant. These are very useful machines, ones that are capable of taking biomass and converting it into usable fuels. The type of material that can be processed can be wood, straw, and anything else that was once growing. This can be converted into many marketable materials including bio oil, charcoal, and biofuel. Here is the process that it will go through, and then let’s look at where you can find a biomass pyrolysis plant for sale.

    How Does The Pyrolysis Process Create These Products?

    The process itself is very unique because of how these byproducts are made. This is the same process where plastic and tires are converted in a similar way. For example, you will have a conveyor that will take this processed material, placing it into the carbonization furnace. It will be heated to high temperatures, and by removing oxygen from this container, it will break down chemically. This material will then go through a cyclone and hot filter, which will then lead to containers that will have the bio oil and biofuel. What remains from this process is the biochar and that is where the charcoal comes from.

    How To Find An Affordable Biomass Pyrolysis Plant For Sale

    Finding one of these plants for sale is easy if you know where to look. The country that produces the best ones is China, and there are many companies that sell them. You can go to major international websites that will show you all of the different companies that are currently producing them. You may even be able to find feedback on the different businesses left by customers from all around the world. Look at the prices that they are charging for the pyrolysis plant for biomass, and you will find several that look appealing. The one that you choose can be shipped to you, a process that will take several weeks, and then there is set up time once it arrives. Once everyone has learned how to use this that is part of your company that works in this division, you will have a way of creating all of these byproducts which can help your business make more money.

    How Long Do These Machines Operate?

    Depending upon their size and the manner in which they are built, they can sometimes run for nearly the entire day. There are times where it will need to be cleaned and serviced, but other than that, it will continue to process this material around-the-clock. You will have crew that will be on rotating shifts so that the plant can run without incident. Once you become accustomed to processing this material, it should be very easy to start generating consistent cash flow from the byproducts of this waste recycling equipment for sale.

    Most of the companies that sell these machines will also have many to choose from. There are those that specifically make wood charcoal, or they will process rice hulls or husks, to easily create all of these byproducts that can be sold. They can even process bamboo, straw, sugarcane, and of course they can also do plastic and rubber. If you are looking for one of these machines, start searching online for a reliable and affordable company that will sell you a biomass pyrolysis plant.  Discover More Here: http://wasterecyclingplant.com/biomass-pyrolysis-plant/.

    © Marco's Blog

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    Global Biochar Market to Hit a Total Revenue of $3297 Million by 2025

    19 October, 2017
     

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    phd thesis on biochar

    19 October, 2017
     

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    Are there figures for how much nitrogen biochar can absorb?

    20 October, 2017
     

    type Exception report

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    exception

    net.sf.qualitycheck.exception.IllegalNullArgumentException: Argument 'userAgentString' must not be null. 	net.sf.qualitycheck.Check.notNull(Check.java:2507) 	net.sf.uadetector.UserAgent$Builder.<init>(UserAgent.java:63) 	net.sf.uadetector.parser.AbstractUserAgentStringParser.parse(AbstractUserAgentStringParser.java:198) 	net.sf.uadetector.parser.AbstractUserAgentStringParser.parse(AbstractUserAgentStringParser.java:39) 	com.javaranch.jforum.url.MobileStatus.isOnMobileDevice(MobileStatus.java:65) 	com.javaranch.jforum.url.MobileStatus.getMobileRequest(MobileStatus.java:52) 	net.jforum.context.web.WebRequestContext.<init>(WebRequestContext.java:107) 	net.jforum.JForum.service(JForum.java:197) 	javax.servlet.http.HttpServlet.service(HttpServlet.java:727) 	org.apache.tomcat.websocket.server.WsFilter.doFilter(WsFilter.java:52) 	net.jforum.JForumFilter.doFilter(JForumFilter.java:64) 	com.javaranch.jforum.url.JSessionIDFilter.doFilter(JSessionIDFilter.java:33) 	com.javaranch.jforum.url.UrlFilter.doChain(UrlFilter.java:78) 	com.javaranch.jforum.url.UrlFilter.doFilter(UrlFilter.java:61) 	net.jforum.util.legacy.clickstream.ClickstreamFilter.doFilter(ClickstreamFilter.java:53) 	net.jforum.JpaFilter.executeFilter(JpaFilter.java:59) 	net.jforum.JpaFilter.doFilter(JpaFilter.java:48) 	com.javaranch.jforum.csrf.CsrfFilter.doFilter(CsrfFilter.java:78) 	net.jforum.JForumExecutionContextFilter.doFilter(JForumExecutionContextFilter.java:39) 	net.jforum.UrlMultiSlashFilter.doFilter(UrlMultiSlashFilter.java:33) 	net.jforum.JForumRequestCharacterEncodingFilter.doFilter(JForumRequestCharacterEncodingFilter.java:34) 

    note The full stack trace of the root cause is available in the Apache Tomcat/7.0.57 logs.


    Carbon coating gives biochar its garden-greening power

    20 October, 2017
     

    Copyright © FosterGem – All rights reserved


    Adsorption of Scandium and Neodymium on Biochar Derived after Low-Temperature Pyrolysis of …

    20 October, 2017
     

    Figure 1

    Komnitsas, K.; Zaharaki, D.; Bartzas, G.; Alevizos, G. Adsorption of Scandium and Neodymium on Biochar Derived after Low-Temperature Pyrolysis of Sawdust. Minerals 2017, 7, 200.

    Komnitsas K, Zaharaki D, Bartzas G, Alevizos G. Adsorption of Scandium and Neodymium on Biochar Derived after Low-Temperature Pyrolysis of Sawdust. Minerals. 2017; 7(10):200.

    Komnitsas, Konstantinos; Zaharaki, Dimitra; Bartzas, Georgios; Alevizos, Georgios. 2017. “Adsorption of Scandium and Neodymium on Biochar Derived after Low-Temperature Pyrolysis of Sawdust.” Minerals 7, no. 10: 200.

    Show more citation formats Show less citations formats

    Note that from the first issue of 2016, MDPI journals use article numbers instead of page numbers. See further details here.


    Carbon coating gives biochar its garden-greening power

    20 October, 2017
     

    World Food Links

    New research has demonstrated how composting of biochar creates a very thin organic coating that significantly improves the biochar’s fertilizing capabilities.
    Source: sciencedaily
    Carbon coating gives biochar its garden-greening power


    Logging slash becomes biochar for local farms

    20 October, 2017
     

    Mainly cloudy and rainy.

    Showers this evening becoming a steady rain overnight. Low 43F. Winds SSE at 5 to 10 mph. Chance of rain 100%. Rainfall near a quarter of an inch.

    Forest Service wildland firefighters monitor a kiln burning slash to create biochar in the Umpqua National Forest on Tuesday. Pictured form left, Daniel Law, Shelbie Zelnar, Jordan Hayes and Eric Parrinello.

    Forest Service wildland firefighters Shelbie Zelnar, right, and Eric Parrinello dig through charcoal and burning slash in a kiln designed to create biochar in the Umpqua National Forest on Tuesday.

    Forest Service

    wildland

    firefighter

    Daniel Law

    pours water

    onto a kiln

    burning slash

    to create biochar

    in the Umpqua National Forest

    on Tuesday.

    Umpqua Biochar Education Team member Scott McKain of Roseburg throws slash into a fire contained in a kiln to create biochar in the Umpqua National Forest on Tuesday.

    Forest Service wild land firefighter Eric Parrinello, front, and Shelbie Zelnar work at a kiln burning slash to create biochar in the Umpqua National Forest on Tuesday.

    Forest Service wild land firefighter Eric Parrinello, right, and Shelbie Zelnar work at a kiln burning slash to create biochar in the Umpqua National Forest on Tuesday.

    Wood burns in a kiln to ultimately create biochar in the Umpqua National Forest on Tuesday.

    Wood burns in a kiln to ultimately create biochar in the Umpqua National Forest on Tuesday.

    Forest Service wildland firefighters monitor a kiln burning slash to create biochar in the Umpqua National Forest on Tuesday. Pictured form left, Daniel Law, Shelbie Zelnar, Jordan Hayes and Eric Parrinello.

    Forest Service wildland firefighters Shelbie Zelnar, right, and Eric Parrinello dig through charcoal and burning slash in a kiln designed to create biochar in the Umpqua National Forest on Tuesday.

    Forest Service

    wildland

    firefighter

    Daniel Law

    pours water

    onto a kiln

    burning slash

    to create biochar

    in the Umpqua National Forest

    on Tuesday.

    Umpqua Biochar Education Team member Scott McKain of Roseburg throws slash into a fire contained in a kiln to create biochar in the Umpqua National Forest on Tuesday.

    Forest Service wild land firefighter Eric Parrinello, front, and Shelbie Zelnar work at a kiln burning slash to create biochar in the Umpqua National Forest on Tuesday.

    Forest Service wild land firefighter Eric Parrinello, right, and Shelbie Zelnar work at a kiln burning slash to create biochar in the Umpqua National Forest on Tuesday.

    Wood burns in a kiln to ultimately create biochar in the Umpqua National Forest on Tuesday.

    Wood burns in a kiln to ultimately create biochar in the Umpqua National Forest on Tuesday.

    DREW — Orange flames wrapped around layers of smoking black and gray pieces of wood that were once small trees crowding a remote section of the Umpqua National Forest. Wildland firefighters with the U.S. Forest Service stood in a clearing, breaking up the charcoal inside a kiln before piling on more logs and sticks.

    Umpqua Biochar Education Team, a committee of the South Umpqua Rural Community Partnership, partnered with the Umpqua National Forest Tiller Ranger District to transform 40 piles of logging slash into biochar, a form of charcoal used in soil to hold in nutrients and moisture.

    Though the team’s biochar production has often gone toward small gardens, this was its first large-scale project to be used for agriculture.

    At the end of the day, the crews poured buckets of water into the sizzling kilns to mix it in and cool off the smoldering char. Once the product had cooled, the crews piled it into white plastic bags to be shipped to small farms in Douglas, Jackson and Josephine counties.

    WINCHESTER — About 30 people gathered around a kiln at a Biochar Expo held at Umpqua Communi…

    “If treated properly, biochar makes an excellent soil amendment and fills a number of other purposes, including holding carbon in soil,” said Don Morrison, a retired Forest Service soil scientist working with UBET. “We’re taking carbon and instead of putting it in the atmosphere we’re putting it into the soil.”

    Carbon released into the atmosphere can contribute to climate change, so Morrison said it’s important to harness it back into the soil.

    “Agricultural soils worldwide have lost 50 percent of their carbon in the last 75 years,” added Kelpie Wilson of Wilson Biochar Associates. “This is a way of putting carbon back into the soil. Carbon that will stay there.”

    About 20 UBET members and wildland firefighters camped out from Monday to Wednesday to burn the leftover branches and logs from a thinning project east of Tiller. Members designed and built a variety of large kilns, some short and five-feet-wide while others stood like tall cones.

    Among 200-year-old trees, the 30-year-old understory trees had been packed into the 15-acre section, creating an overabundance of potential fuels. When a crew began thinning the forest, there were about 800 of these small trees per acre, but now there are about 150 per acre left. The U.S. Forest Service usually conducts a prescribed burn to clear out the extra fuels to prevent larger wildfires from catching in the area.

    “Well there were way too many trees in the understory for that,” Morrison said. “Now that stand will be a lot more resilient to wildfire.”

    The U.S. Forest Service sold the small trees to the team for a nominal amount, according to Morrison.

    Biochar groups confident despite study of forest biomass

    Wilson said the farmers will use the char in their animal barns to absorb urine and ammonia, improving the environment for the animals and the people working in the barn.

    After sitting in the barn, the charcoal can be mixed with compost and later used in soil for crop production. Biochar also absorbs nitrogen and moisture so the soil its mixed with stays light and fluffy.

    Dennis Morgan, a member of the team, added the char provides hiding places for microorganisms.

    This project is over a year in the making, as all the slash had been spread out along a quarter-mile road to dry by June 2016. In September of that year, team members realized there was no remaining money in their budget so all work would have to be done by volunteers. Early fall rains caused them to wait until 2017 to begin the burns.

    The group raised $2,000 through advance sales of the biochar to hire a contractor to pile about 80 percent of the logging slash, pay for fuel for the use of a farmer’s tractor and buy other supplies.

    “This is my first experience learning anything about this,” said Andrew Sandri, a U.S. Forest Service engine operator helping with the project. “We’re just filling it up, torching it, continuing to feed it and building up the charcoal.”

    Reporter Emily Hoard can be reached at 541-957-4217 or ehoard@nrtoday.com. Or follow her on Twitter @hoard_emily.

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    Carbon coating gives biochar its garden-greening power

    20 October, 2017
     


    Carbon coating gives biochar its garden-greening power

    20 October, 2017
     

    As a soil additive, biochar can store carbon and thus reduce greenhouse gas emissions, and it can slow-release nutrients to act as a non-toxic fertilizer … …read more


    Mediterranean wines focus on sustainability

    20 October, 2017
     

    The wine sector is to focus on improving its environmental and sustainability commitments to respond to consumer concerns.

    Vinisud 2018, the exhibition dedicated to Mediterranean wine, will focus on the issue of sustainable development and ethical accountability during its event on 18 to 20 February at the Montpellier showground.

    The aim is to consider how consumer demands have changed with more focus on local products and transparency.

    Vinisud will look into the way that the wine sector is adapting with sustainable, organic, natural winemaking practices and vegan wines.

    Three international studies will be unveiled covering ethical consumerism in France; environmentally accountable labelling in New York and London and the progression of Mediterranean wines.

    There will also be a survey of the responsible initiatives undertaken by exhibitors and a presentation on sustainable consumer habits.

    Meanwhile, Bodegas Torres, the Spanish winemaker, has already revealed it is experimenting with technologies to minimise its carbon footprint.

    The Penedès family winery said it wants to go a step further in its environmental commitment to reduce its CO2 emissions by 30% a bottle from 2008 to 2020.

    Miguel Torres, president of Bodegas Torres, said: “The wine sector has in its own hands the capacity to lead the adoption of CO2 capture and reuse technologies to considerably reduce emissions.”

    Bodegas Torres is supporting the research and development of CCR (Carbon Capture and Reuse) technologies, in cooperation with universities and technology companies, to seek ways of making use of the CO2 produced.

    Tests carried out at Bodegas Torres are intended to show the range of possibilities offered by these technologies as a future solution for fighting climate change.

    The Bodegas Torres environmental team has carried out tests with eight different technologies offering alternative uses of the CO2 produced during fermentation.

    These technologies include using microalgae as biomass; carbon fertilisation; or charcoal (biochar) generation.

    To obtain energy, tests have been carried out with power-to-gas (obtaining hydrogen from electrolysis of water with electricity from renewable energies), and methanation (transformation of CO2 and hydrogen into methane using methane-producing microorganisms).

    In the case of products, CO2 can be used to produce solvents.

    The Harpers digital edition is available days ahead of the printed magazine.

    The only dedicated publication for both those in the business of wholesaling drinks and their accounts.

    You can now view the latest Harpers supplement with our digital edition….

    You can now view the Rioja 10×10 results and hear from the judges here


    Ways To Find A Quality Biochar Making Machine On The Market

    21 October, 2017
     


    Carbon coating gives biochar its garden-greening power

    21 October, 2017
     

    IMAGE: This is a field experiment in Switzerland, with setup of compost windrows from mixed manure before adding the biochar. view For more than 100 years, biochar, a carbon-rich, charcoal-like substance made from oxygen-deprived plant or other organic matter, has both delighted and puzzled scientists.

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    Experimental and modeling investigations of ball-milled biochar for the removal of aqueous …

    21 October, 2017
     

     


    and biochar-coal co-combustion systems

    21 October, 2017
     

     


    Bio char research papers

    22 October, 2017
     

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    05-01-2017

    +1%

    *wyniki aktualizowane raz w miesiącu


    Biochar, the once and future agricultural mainstay.

    22 October, 2017
     

    Could an anaerobic charcoal offer a way to reduce fertiliser use and bump up carbon capture?

    Chip away at climate change; help Nora by eating plants: Letters to the editor

    Top industry experts set for Dubai Solar Show


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    Biochar Global Market 2017- Diacarbon Energy, Carbon Gold, Agri-Tech Producers and Biochar

    23 October, 2017
     

    Global Biochar Research Report serves as a comprehensive guide to provide the latest Biochar industry trends like the growth opportunities, Biochar market size, product launch events and market drivers. This report offers the competitive landscape study of Biochar based on key manufacturers, market presence in various regions and Biochar market revenue. Global Biochar market is foreseen to experience tremendous growth due to technological advancements and innovations in the Biochar product.

    All the relevant details like product type, Biochar manufacturing cost, market scope, Biochar applications are evaluated at depth in this report. This report presents the past, present and forecast Biochar market information like the market size, Biochar growth rate, emerging sectors, Biochar revenue and consumer volume. Analysis of Biochar market statistics, market competition, Biochar production capacity, and utilization ratio will be useful to all the Biochar market aspirants. Global Biochar report analyses provide the Biochar industry view based on company profile of key Biochar players, their sales revenue, Biochar business strategies and market gain.

    The Biochar industry is sited to see a dynamic growth due to changing consumer demand, Biochar import/export scenario and analysis of Biochar emerging segments. This report presents the vital company details in the form of graph and tables which will offer a comprehensive view of Biochar industry. The analysis of Biochar growth opportunities, region-based study, and Biochar investment feasibility study will lead to accumulation of revenue. All the Biochar marketing strategies, business tactics, and forecast Biochar market trends will help the readers in identifying the Biochar growth factors.

    Do Enquiry for Biochar report here: http://emarketresearch.us/global-biochar-market-2017-2022/#Inquiry-Before-Buying

    Global Biochar report is segmented as follows:

    Global Biochar Market segmentation based on regions: This portion elaborates the major Biochar producing regions like North America, Europe, Asia-Pacific, Latin America, Africa, and Middle-East regions. Furtherly, the key countries involved in Biochar industry like United States, Mexico, Israel, Japan, China, Canada, Korea, India, Germany, UK, France, Russia, Italy, and Southeastern countries are covered.

    Global Biochar Market segmentation based on Manufacturers: This portion evaluates the Biochar market based on top manufacturers, their company details, sales volume, region, supply/demand scenario and Biochar development trends. Leading Biochar players are Nanjing Qinfeng Crop-straw Technology, Kina, The Biochar Company, Carbon Gold, ElementC6, Liaoning Jinhefu Group, Pacific Biochar, Cool Planet, Hubei Jinri Ecology-Energy, Diacarbon Energy, BlackCarbon, Biochar Now, Swiss Biochar GmbH, BioChar Products, Agri-Tech Producers, Vega Biofuels, Seek Bio-Technology (Shanghai) and Carbon Terra.

    Global Biochar Market segmentation based on product type: This portion cuts Biochar market into Corn Stove Source Biochar, Wheat Stove Source Biochar, Rice Stove Source Biochar and Wood Source Biochar. Also, lists all the Biochar product types based on classification, description, definiton, Biochar product scope, and consumer demand. Biochar Market segmentation based on product application: This portion divides Biochar market into Soil Conditioner and Fertilizer. Wide-spread product applications can be attributed to the technological advancement and innovations taking place in Biochar sector.

    Request Sample Biochar Research Report at: http://emarketresearch.us/global-biochar-market-2017-2022/#Request-Sample

    Key attractions of the Global Biochar Market report:

    Analysis of forecast and past Biochar market information will help in planning and designing of present Biochar business strategies. A complete study of Biochar players, their business tactics will help in understanding the consumer demands and Biochar market scope. Correct identification of Biochar growth opportunities and up-to-date consumer demands will lead to the accumulation of profits. The latest details related to Biochar industry new, product launch events, supply chain analysis, growth and risk factors involved will help in investment feasibility study. Lastly, valuable conclusion, research study, Biochar market size estimation, emerging market segments will forecast the Biochar market growth in coming years.

     

     


    International Team Reveals Chemistry Behind Biochar's Nutrient Releasing Potential

    23 October, 2017
     

    For over a century, researchers have been intrigued and thrilled by biochar, a carbon-rich, charcoal-like material derived from oxygen-deprived plant or similar organic matter. When used as a soil additive, biochar has the ability to store carbon and thereby decrease release of greenhouse gas. It can also slowly release nutrients, thus functioning as a non-toxic fertilizer.

    However, the exact chemistry behind biochar’s ability to store nutrients and advance plant growth has been a puzzle to date, thereby considerably restricting its commercial application.

    At present, an international research team—mainly constituting experts from Colorado State University—has shone light on remarkable detail and mechanistic knowledge of biochar’s ostensibly amazing characteristics. The study, published in the Nature Communications journal on October 20, 2017, was headed by Germany’s University of Tuebingen, and has shown that when biochar is composted, a very thin organic coating is formed, which considerably enhances the fertilizing potential of biochar. A mix of cutting-edge analytical methods were used to validate that the coating enhances the strength of the interactions of biochar with water and also its potential to store soil nitrates and similar nutrients.

    Such an in-depth knowledge of the characteristics of biochar could have the potential to start a vast commercialization of biochar fertilizers. This change may lead to worldwide reliance on inorganic nitrogen fertilizers that have functioned as the state-of-the-art food-production means for nearly 100 years.

    CSU contribution

    The international research team included Thomas Borch, professor in the Department of Soil and Crop Sciences at CSU with joint appointments in chemistry and civil and environmental engineering, and Robert Young, a research scientist. The CSU researchers were instrumental in performing high-resolution mass spectrometry at Florida State University’s National High Magnetic Field Laboratory. The data extracted by them assisted in validating the composition of the biochar’s nanoscale carbon coating.

    To characterize a super-thin carbon coating on a carbon substrate is nearly impossible, our international team used many different advanced techniques to perform the analyses. Robert Young led our group’s contribution of ultra-high resolution mass spectrometry to investigate the coating and probe its elemental makeup.

    Thomas Borch, professor in the Department of Soil and Crop Sciences at CSU

    Composted biochar

    Andreas Kappler, from the Center for Applied Geoscience at the University of Tuebingen, and Nikolas Hagemann, a geo-ecologist, headed the study. The researchers intended to test biochar before and after composting it using mixed manure. They used a combination of spectroscopic and microscopic investigations and discovered that dissolved organic substances had a major role in biochar composting and formed the thin organic coating.

    This organic coating makes the difference between fresh and composted biochar,” stated Kappler. “The coating improves the biochar’s properties of storing nutrients and forming further organic soil substances.” Hagemann further stated that the coating was formed when untreated biochar was mixed with soil, however this was very gradually. Commercial composting experiments were performed on a small scale by adopting expertise and infrastructure from the Ithaka Institute in Switzerland.

    Why biochar?

    Imprudent application of liquid manure or mineral nitrogen fertilizers in agriculture has severe influence on the environment. These fertilizers lead to the release of nitrous oxide, culminating in the leaching of nitrates into the groundwater. Researchers have proposed the addition of biochar as a nutrient carrier to the soil as an environment-friendly substitute. However, the widespread use of biochar has not been economically feasible due to the lack of knowledge on the way it stores and emits nitrates.

    In agricultural crop production, higher yields usually only occur when biochar is applied together with nutrients from non-charred biomass such as liquid manure,” stated Hagemann. “Using biochar without adding nutrients or with pure mineral nutrients has proved to be far less successful in many experiments.”

    The Rosa Luxemburg Foundation (Berlin) supported the study in the form of a doctorate scholarship for Nikolas Hagemann. The EU COST Initiative TD1104 and the Ithaka Institute (Switzerland) also supported the research.

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    Biochar Fuel Market Outlook To 2022: Top Companies In Market, Trends & Growth Factors And …

    25 October, 2017
     

    The Biochar Fuel Market report is to recognize, explain and forecast the global Biochar Fuel Market based on various aspects such as explanation, application, organization size, distribution mode, region. The Biochar Fuel Market report purposefully analyses every sub-segment regarding the individual growth trends, contribution to the total market, and the upcoming forecasts. Also, Biochar Fuel Market report will help you take informed decisions, understand opportunities, plan effective business strategies, plan new projects, analyse drivers and restraints and give you a vision on the industry forecast.

    Biochar Fuel Market split by Application -Application 1, Application 2, Application 3 Biochar Fuel Market Segment by Regions– (North America, Europe and Asia-Pacific) and the main countries (United States, Germany, United Kingdom, Japan, South Korea and China).

    Through the statistical analysis, the Biochar Fuel Market report depicts the global Industry Analysis, Manufacturers Analysis, Biochar Fuel Industry Development Trend, Sales Demand and Forecast to 2021.

    Get PDF Sample of Biochar Fuel Market Report @ https://www.360marketupdates.com/enquiry/request-sample/10999583

    Report Coverage:

    Table of Contents:

    Chapter 1 Biochar Fuel Market Overview

    1.1 Definition

    1.2 Classification Analysis

    1.3 Application Analysis

    1.4 Biochar Fuel Industry Chain Structure Analysis

    1.5 Biochar Fuel Market Development Overview

    1.6 Global Biochar Fuel Market Comparison Analysis

    1.6.1 Global Import Market Analysis

    1.6.2 Global Export Market Analysis

    1.6.3 Global Main Region Market Analysis

    1.6.4 Global Market Comparison Analysis

    1.6.5 Global Market Development Trend Analysis

    Chapter 2 Biochar Fuel Up and Down Stream Industry Analysis

    2.1 Upstream Raw Materials Analysis of Biochar Fuel Market

    2.1.1 Upstream Raw Materials Price Analysis

    2.1.2 Upstream Raw Materials Market Analysis

    2.1.3 Upstream Raw Materials Market Trend

    2.2 Down Stream Market Analysis of Biochar Fuel Market

    2.1.1 Down Stream Market Analysis

    2.2.2 Down Stream Demand Analysis

    2.2.3 Down Stream Market Trend Analysis

    Inquire for further detailed information about Biochar Fuel Market Report @ https://www.360marketupdates.com/enquiry/pre-order-enquiry/10999583

    Chapter 3 Biochar Fuel Productions Supply Sales Demand Market Status and Forecast

    3.1 2012-2017 Biochar Fuel Market Capacity Production Overview

    3.2 2012-2017 Biochar Fuel Production Market Share Analysis

    3.3 2012-2017 Biochar Fuel Market Demand Overview

    3.4 2012-2017 Supply Demand and Shortage of Biochar Fuel Industry

    3.5 2012-2017 Biochar Fuel Import Export Consumption

    3.6 2012-2017 Biochar Fuel Cost Price Production Value Gross Margin

    In the end, Biochar Fuel Market report provides the main region, market conditions with the product price, profit, capacity, production, supply, demand and market growth rate and forecast etc. Biochar Fuel Market report also Present new project SWOT analysis, investment feasibility analysis, and investment return analysis.


    Best Techniques For Finding Affordable Biochar Production Equipment Available For Purchase

    25 October, 2017
     

    The production and sale of biochar has risen exponentially, especially with the use of pyrolysis machines. Charcoal is extremely very easy to make with one of these machines and pyrolysis plants that can be found all over the world. This really is a byproduct of taking both organic and inorganic products and breaking them down chemically. The molecular structure changes, ultimately causing the creation of biofuel that may replace diesel fuel, and biochar which can be burnt as charcoal. To acquire the best carbonizing machine on the market, at reasonable prices, the following advice will bring you to the right companies.

    A Brief Summary Of This Technique
    This process is actually very easy to understand. Taking a look at a pyrolysis plant, this makes more sense by examining this from the massive perspective. Assuming you do have a steady flow of biodegradable materials for example wood chips, palm kernels, coconut shells, as well as sludge, this can all be placed in to these machines. If this sounds like a charcoal production plant, it will have a big reactor which happens to be in which the material goes. Temperatures is going to be increased before the chemical composition of your material actually starts to disintegrate. This can be funneled into different areas, and also the physical residue of the process would be the biochar. Since oxygen was taken from the whole process of breaking this down, it does not have burned, and that’s why the charcoal can be used barbecues, as well as heating homes in areas where electricity along with other kinds of power are tricky to find.

    Must You Have Got A Large Flow Of Biomass?
    The quantity of biodegradable material which you have available, or even materials like plastic or rubber, will gauge simply how much production you will get. In order to obtain the most money with this type of business, it is strongly advised you have a sizable method to obtain this product to process. Many people setup entire plants close to areas where there will likely be a sizable harvest of coconuts, rice, or they may put in place beside a landfill. In so doing, they will have easy accessibility materials which will be essential for the pyrolysis process to be effective. The greater number of you have, the greater number of charcoal you are likely to create, which results in increased amounts of production. Therefore, if you have a huge availability of this product which can be processed, our recommendation is that you purchase a whole pyrolysis plant that may handle the bigger volume of material that you may have available.

    This can be becoming among the top products that people can find if they want to contribute to the planet, as well as earn money along the way. When they do get access to these biodegradable and nonbiodegradable products, and so they have the cash to invest, it’s definitely an intelligent decision to help make. You will always find will be buyers for charcoal, not to mention biofuel for individuals who run diesel motors at large commercial or industrial locations. Once you begin, you will notice how beneficial this can be for helping keep the landfills clear, as well as the way will manage to benefit your individual or business finances. Begin looking for affordable biochar production equipment for sale to get going within this industry.

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    Beston charcoal making machine is a famous brand in the international market. In recent years, with the continuous innovation and development, Beston Group has invented the double layers charcoal carbonization furnace that can make sure the hot source contacts with raw materials for several time from the beginning, and the furnace is the horizontal type design which can make the hot air not touch with the bottom of the furnace. By this method, it can reduce the damage of furnace to extend service life. Carbonization furnace is a vital part of the whole set of machine, so the furnace with higher quality can benefits to save cost the whole equipment indirectly.


    Wood Vinegar Market by Authentication, Track and Trace Technology – Global Opportunity …

    25 October, 2017
     

    Wood Vinegar Market research report provides Emerging Market trends, Raw Materials Analysis, Manufacturing Process, regional outlook and comprehensive analysis on different market segments.

    The Wood Vinegar Market provides detailed analysis of Market Overview, Market Drivers, Opportunities, Potential Application. Top Key Players of Wood Vinegar Market covered asACE (Singapore) Pte Ltd,Canada Renewable Bioenergy Corp.,Nettenergy Bv,Tagrow Co., Ltd.,Byron Biochar,New Life Agro,Verdi Life,Nakashima Trading Co. Ltd.,Penta Manufacturer,Doi & Co., Ltd . 

    Wood Vinegar industry drives A strong trend of R&D investments in food industries. Other growth drivers include the need to curtail costs, growth and increased use of shifting commodity prices, strength of private label brands and increased competition from players in Wood Vinegar market.

    Get Sample PDF @ http://www.360marketupdates.com/enquiry/request-sample/10394798

    The Wood Vinegar market research report gives an overview of Wood Vinegar industries on by analysing various key segments of this market based on the product types, application, end-to-end industries and its scenario.

    Wood Vinegar Market split by Product Type: Type I,Type II,Type III and Market split by Applications: Agriculture,Animal Feed,Food, Medicinal, and Consumer Products,Others .

    The regional distribution of Wood Vinegarindustries is across the globe are considered for this market analysis, the result of which is utilized to estimate the performance of the International market over the period from 2017 to forecasted year.

    Have Any Query? Ask Our Expert @ http://www.360marketupdates.com/enquiry/pre-order-enquiry/10394798

    The Wood Vinegar market research report shed light on Foremost Regions: United States, EU, Japan, China, India and Southeast Asia.

    Wood VinegarMarket in World, presents critical information and factual data about Wood VinegarIndustry, with an overall statistical study of this market based on market drivers, market limitations, and its future prospects. The widespread trends and opportunities are also taken into consideration in Wood Vinegar Market study.

    The product range of the Wood Vinegar industry is examined based on their production chain, pricing of products and the profit generated by them. Various regional markets are analysed in Wood Vinegar market research report and the production volume and efficacy for Wood Vinegar market across the world is also discussed.

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    Biochar comparison essay

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    Organic Biochar

    27 October, 2017
     

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    Ways To Find A Quality Biochar Making Machine On The Market

    27 October, 2017
     

    The entire process of making biochar, or charcoal, can occur when you use a pyrolysis machine. It starts off with using both inorganic and organic materials. By way of example, you have probably seen these appliances which are close to places where tires are plastic happen to be piling up in landfills worldwide. They are able to take this material, process it into usable byproducts including oil, fuel, and charcoal. Biochar is amongst the most in demand products on earth, and also this process can be extremely helpful for these countries. If you wish to get involved with a marketplace that may be extremely profitable and useful for the planet, the following is how to get your own biochar making machine available for sale.

    Are These Machines User Friendly?

    Whether you receive a pyrolysis machine which is smaller, or maybe you put money into a full pyrolysis plant, these are relatively user friendly and understand. The material is separated into smaller components, sent by conveyor belt in a pyrolysis plant reactor where it really is heated to extremely high temperatures to destroy it down. There is absolutely no oxygen involved with this process. Materials are then sent into different containers, and processed for shipment. Biochar will be the solid residue that is left with this process, and can be used for charcoal.

    Where Should You Search For Such Products?

    You ought to start looking of these products within the Orient since this is the location where the most highly technological biochar pyrolysis machine is produced. This can be the location for the most cost effective pyrolysis plants, making it possible to reduce costs if you are intending to spend into this industry. It is essential to work with a company that has been selling these for quite a while and possesses a really positive worldwide reputation. This is certainly all verifiable on the net, and after you have several quotes from the different businesses, you could make your purchase and possess it shipped to you personally.

    How Soon Could You Learn To Visit A Return On The Investment?

    Based on the kind of pyrolysis machine that you will get, your return on investment could happen in a short time. By way of example, if you achieve a pyrolysis plant, one which was created to process either inorganic or organic materials, it may be just a couple of years before the entire investment starts to purchase itself. You may have access to a large numbers of plastic bottles, rubber tires, or you may have organic materials for example straw, sugarcane, palm kernel shells, sawdust, sludge, or even bamboo which needs to be processed. For those who have a consistent method to obtain these materials, it merely a matter of buying a big enough pyrolysis plant to process everything and then sell it to folks that want these products. Have a look at the machine: http://carbonationmachine.net/biochar-production-equipment/.

    You will be able to get a biochar making machine available for sale online that is certainly well within your budget, and can handle the amount of material that you currently have. Whether you are processing organic material, or if you are going through numerous plastic bottles, you will be still planning to see a return on the investment. It might take a couple of years, or it will be sooner, depending on what you have available. In either case, it's the best way to help the environment plus earn money with an investment within a short time.

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    Understanding, measuring and tuning the electrochemical properties of biochar for environmental …

    28 October, 2017
     

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    BOUND TO PLEASE / Global warming guide lists 100 ways to save the planet

    28 October, 2017
     

    Close

    The Japan News

    10:00 am, October 28, 2017

    By Tom Baker / Japan News Staff WriterDrawdown: The Most Comprehensive Plan Ever Proposed to Reverse Global Warming

    Edited by Paul Hawken

    Penguin, 240pp

    Cows don’t fart nearly as much I thought they did. But their contribution to air pollution is worse than I imagined.

    That’s part of what I learned from “Drawdown,” a new book listing 100 ways to fight global warming.

    Compiled by Project Drawdown, a nonprofit organization of scientists, engineers and others, the book ranks the 80 best ideas that can be implemented right now. It lists another 20 that look good but require future breakthroughs, such as the Hyperloop, fusion power and “enhanced weathering of minerals.”

    Among the immediately practical steps, eating more plants and less meat — especially beef — ranks as No. 4.

    “If cattle were their own nation, they would be the world’s third-largest emitter of greenhouse gases.” The worst gas they emit is methane, which has a greater greenhouse impact than carbon dioxide. A byproduct of the ruminant digestive system, methane is “expelled from both ends of the animal — 90 percent through burps.”

    Each of the 100 ideas gets its own brief chapter. There’s a lot of technical detail crammed in, but the book’s organization lends itself to skipping around, and it is lavishly illustrated with gorgeous photos to ward off mental fatigue.

    Many of the ideas are about energy, such as wind farms on land (No. 2) or offshore (No. 22) and various forms of solar energy (Nos. 8, 10, 25 and 41). The sections on transportation urge greater use of mass transit (No. 37) and high-speed rail (No. 66), two fields in which Japan excels — and in which it is striving to export its know-how.

    Among such familiar ideas, you’ll surely encounter some that are new to you. For me, that included biochar (No. 72), a technique by which ancient Amazonian people turned waste into a charcoal-like substance they buried to enrich the soil, little realizing they were sequestering carbon at the same time.

    A few of the ideas are puzzling at first glance. Equipping your home with water-saving devices (No. 46) sounds like a nice idea — but water doesn’t emit greenhouse gases, does it? Maybe not, but the energy that goes into pumping, purifying and heating it does, so saving water helps the atmosphere as well as your utility bills.

    Gender equality is another thing that, while obviously good in its own right, has a surprising impact on global warming. Educating girls through secondary school (No. 6) puts the brakes on world population growth, and thus on resource consumption, while recognizing the right of women to own property (No. 62) leads to better management of small farms.

    The authors give only qualified recommendations to some things that could have negative side effects, such as incinerating garbage to generate electricity (No. 68), but most of their ideas are “no-regrets” solutions. For instance, walkable cities (No. 54) appeal equally to “environmentalists … economists and epidemiologists.”

    What’s No. 1? Proper handling of refrigerants, especially when disposing of old air conditioners and refrigerators. Refrigerant gases are even worse than methane in greenhouse terms, and as the world warms up, their greater use is ironically inevitable.

    Hopefully, the ideas in this book will help the world keep its cool.

    Where to Read

    Any cool, green spot you can reach by electric car (No. 26), electric bike (No. 69) or ride-sharing (No. 75). Bring some nuts to snack on, and skip the beef jerky.

    Maruzen price: ¥3,520 plus tax (as of Oct. 27, 2017)Speech

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    How To Make Bio Char To Improve Your Soil Homestead

    28 October, 2017
     

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    28 October, 2017
     

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    Biochar research paper

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    Phd Thesis On Biochar

    30 October, 2017
     

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    Bio Char

    30 October, 2017
     

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    Biochar

    30 October, 2017
     

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    By Karl North | October 30, 2017

    I have been following the biochar story since it began to gain visibility over a decade ago. I view it from the perspective of forty years of farming informed by study of systems ecology. My understanding of both of these pursuits has evolved over that time in ways that will inform this critique. I began to study ecology in a unique graduate program in anthropology that regarded the knowledge of a society as incomplete without an understanding of its ecological foundation. However I still saw the study of ecosystems as one field of knowledge among others. Gradually I have come to see it as the master or umbrella discipline, one that that provides an essential framework for all other inquiry.

    Similarly, in farming I first saw the enterprise I was creating as sheep farming. As the wellbeing of my sheep and draft horses was heavily reliant on the health and productivity of perennial grasses, it began to make more sense to think of the enterprise as grass farming. But as forage quality and productivity in turn depends on the state of the soil and its food web, I ultimately came to see myself as a carbon farmer, as it became increasingly apparent what an important role the level of soil organic matter (and its carbon) plays in the fitness and success of the farm as an agroecosystem. Others have experienced this evolution, and now there exist increasing numbers of self-proclaimed carbon farmers, for whom a central question is to design a farming system that insures the best regeneration of soil carbon.

    Getting past the Greenwash

    Given the background described above, it should not surprise the reader to learn that I have tended to regard with the healthy skepticism of a student of science the promotion of a form of charcoal as a soil amendment. A fad enhanced with an intriguing story of terra preta, the dark earth residue of a mysterious ancient Amazonian civilization, appears designed to enlist environmentalists desperate for a solution to climate change and to entice business people who are always looking for a new way to make a profit. With agricultural soil organic matter levels typically down in the 1-2% range due to conventional tillage agriculture, there is no doubt of a need to rebuild soil, and since it sequesters atmospheric carbon in the process, so much the better. However, as ecological farmers, we have studied the many ways both mankind and nature have generated and regenerated soil. Rodale’s excellent long term trials demonstrated one way. An example of dark earths that evolved in natural ecosystems is the muck soils sought by growers of heavy feeders like onions. The real question for us should be: What is the most effective way that integrates with ecosystem processes and does no harm in the larger context?

    The first tipoff of an attempt to create a new fashion is to dress up something old with a more attractive label. The term “Biochar”, like ‘clean propane’ or ‘clean coal’, is an attempt to make a substance and a process sound greener than it really is. Biochar is no more nor less biological than any other form of charcoal. All charcoals are made from biomass (any substance that is or once was part of a living thing) by pyrolysis, which is oxygen-starved combustion, a rather violent process by comparison with the ways biomass is decomposed in most ecosystemic carbon cycling. I am using the term biochar in this article only because that is how the general public recognizes it. A more neutral term used in the scholarly literature is black carbon.

    A lengthy review of the literature on the subject only tended to confirm my skepticism. Currently it is mostly blatant promotion – garden variety advertising; I could find few attempts to view the subject critically with the habitual skepticism necessary to scientific appraisal.  A common kind of statement is the following: “Biochar is increasingly being recognized by scientists and policy makers for its potential role in carbon sequestration, reducing greenhouse gas emissions, renewable energy, waste mitigation, and as a soil amendment.”[1]

    As the biochar feeding frenzy has reached new heights, even the scientific papers tend to begin on a promotional tone, with just enough ambiguity in the language to cover for the caveats buried deep in the studies. For example, Biochar is often described as if it were a fertilizer. A website of Cornell University, a hot spot of biochar research, postulates “the soil fertility benefits of biochar”.[2] To the lay reader that carries the implication that it is a fertilizer. The fact that biochar is not a fertilizer and makes little direct contribution to soil fertility is often buried deep in the scientific literature.

    Again for the lay reader, the literature also tends to confuse biochar with terra preta/dark earth by using the properties of the latter to promote the former. The properties of earth darkened with carbon from any source are the result of a complex systemic process of interaction between the carbon and the other soil constituents over a long time frame; they vary in the extreme with the nature of a specific soil and climate and cannot be deduced from the properties of charcoal alone or in a short term laboratory trial.

    Stoked by the desire to defy the limits to growth on a finite planet, the business-oriented literature is also full of glowing expectations that biochar production will deliver yet another agro-fuel to replace fossil fuels as the end of cheap oil starts to bite into the global economy. Given the disastrous boondoggle of corn ethanol and soy diesel, production of which steals land from food production and exists only with the prop of massive subsidies because it can never deliver any appreciable net energy, it is surprising that anyone has the nerve to suggest another agrofuel project.

    Finally, the treatment of this subject, as with most others, suffers from the limitations of narrow focus of the dominant reductionist way of doing science. Big questions like sustainability and climate dynamics require a systemic approach. I could find few attempts in the literature to compare biochar use with alternative solutions, or to make the full life cycle energy calculations necessary to any investigation of energy production or consumption in complex systems like ecosystems and human economies.

    In this article I will address the following claims of the biochar promoters:

    I will demonstrate that the first claim, while true, is misleading because it ignores other, better ways of providing the same benefits. Regarding the second claim, while the relative stability of biochar appears true, I will show that properly designed agroecosystems can achieve the same carbon sequestration results while better serving overall system health and productivity. Regarding the third claim, I will argue that while pyrolysis produces burnable methane, so do other less violent processes. Moreover, like all energy alternatives, it will fail to reduce fossil fuel use due to the Jevons Paradox[3]. As with all attempts to produce biofuels, whether the consequences for society and the planet are good or bad depends greatly on the choice of biomass feedstock and where it comes from. As I will argue, there are no biochar feedstocks produced in any ecosystem on the planet whose massive expropriation would not damage the normal, necessary function of the carbon cycle in that ecosystem. Unless of course one is counting on sourcing them from Mars.

    Seeing the issue through the ecosystemic lens

    The ecosystemic lens is the worldview that frames all inquiry in terms of the dynamics and health of the ecosystem processes. The health of these processes and obedience to their laws are essential to the long term survival of all species within its system, including us. Although we have been led to believe since the Book of Genesis that Nature is our plaything, Nature rules us, not the other way around.

    Using the ecosystemic lens, students of ecosystems soon realize and must come to terms with the complexity of our environment, which derives from the interaction and interdependence of so many of its parts. Within ecosystemic wholes they see further layers of complexity: social wholes and organisms, especially ours. They discover that there is no simple answer to any problem because all problems are ultimately connected and consequences of actions are multiple. They realize that when intervening in complex systems, one can never do just one thing! There are always ripple effects, and consequences distant in space or time are commonly far different from immediate ones. In my view a critical assessment of any human activity or technology needs to be undertaken through the ecosystemic lens. That is how I intend to explore the question of biochar.

    Farmers who see agriculture in an agroecological framework know that the health of ecosystem processes includes proper carbon and other mineral cycling. The biochar literature consistently refers to biochar feedstocks as “wastes” or “residues”, a first tip-off of the narrow unecological lens through which promoters are viewing the subject.

    I still remember hearing sustainability pioneer William McDonough[4] in a keynote address to the Pennsylvania Association for Sustainable Agriculture years ago stating, “There’s no such thing as waste!” Ecosystems, whether managed or natural, must follow the ‘law’ of the ecosystem food web: waste=food=waste=food. The level of ecosystem health and sustainability depends on how well this law is obeyed. In the language of systems ecology, there exists a mineral/nutrient cycle that must not fail or be broken, and if possible must be enhanced.

    1. Biochar has the unique ability to indirectly enhance soil fertility by encouraging the growth of soil microbial populations and store and retain plant nutrients.

    The main trouble with this claim is not with the truth of the functions of black carbon in the soil, but of with the claim of uniqueness of biochar to serve these functions. A typical statement is: “The application of bio-char (charcoal or biomass-derived black carbon (C)) to soil is proposed as a novel [my italics] approach to establish a significant, long-term, sink for atmospheric carbon dioxide in terrestrial ecosystems.”[5] It should not be necessary to remind readers of The Natural Farmer that ways of getting soil carbon up to optimal levels and keeping it there are hardly new.

    There exist numerous ways to get black carbon into the soil and keep it there. However the biochar literature rarely considers these other ways of obtaining dark earth and its benefits, hence, what is worse, it rarely compares them to its favorite, biochar production, an industrial process that occurs outside the agroecosystem. So let’s do the comparison.

    From the viewpoint of conventional chemical fertilization – soluble salt fertilizers that can contain as much as 40% of N, P or K – neither compost nor pyrolysis rate as fertilizers. Both processes lose nutrients, especially nitrogen amd carbon. Figures vary in the scholarly studies, so the following are some purely illustrative figures from different studies to compare nutrient retention in the two processes:

    Unlike pyrolysis (a chemical process), composting is a biological process, a version of carbon cycling time-tested through several billion years of natural history. Ongoing vegetation die-off and regrowth in natural ecosystems in many locations slowly build soil organic matter and its black carbon content up to maintenance levels that due to constant renewal can be permanent, barring disturbance – natural ones like landslides or erosive floods or man-made ones like tillage. In the US Northeast these levels commonly attain 5-6% soil organic matter (SOM).

    Based on this ecosystemic knowledge, the well-known 30-year project of organic farming research pioneer, Rodale Institute, demonstrated that a combination of animal integration, legume-based forage rotations, cover-cropping and herbicide-free minimal tillage can even improve on natural SOM levels in the Northeast and quicken the process. And regarding the carbon sequestration potential of their system, Rodale concluded,

    “Simply put, recent data from farming systems and pasture trials around the globe show that we could sequester more than 100% of current annual CO2 emissions with a switch to widely available and inexpensive organic management practices, which we term “regenerative organic agriculture.” These practices work to maximize carbon fixation while minimizing the loss of that carbon once returned to the soil, reversing the greenhouse effect.”[10]

    The work of two holistic scientists, French farmer-researcher André Voisin and range ecologist Alan Savory brought more insights from natural ecosystems to bear, and demonstrated systems that accelerated the ability of Rodale’methods to regenerate soil even more, permanently raising soil carbon levels in the same way.

    Unfortunately, most US readers of Grass Productivity, Voisin’s chef d’oeuvre, absorbed only the rotational grazing component of the effort in healthy agroecosystem design that his title implies. Using long term studies from different European farming systems, Voisin showed that a system that integrated careful manure management, planned grazing and the potentially productive ‘wet meadows’ common to many European coastal plains could rebuild soil and produce a surplus of fertility that, applied to crop fields, in many cases had sustained those farming systems and their soil carbon levels for hundreds of years.[11]

    While Voisin’s system was designed to work well in cool wet, temperate environments like New England and Europe, Savory adapted it to work in arid, seasonal rainfall environments like rangelands in Africa, Australia and the US western plains. Studies of the performance of the Savory system on grasslands all over the world bear out Savory’s conclusion:

    By restoring grasslands through Holistic Planned Grazing we have the potential to remove the excess atmospheric carbon that has been the result of both anthropogenic soil loss over the past ten thousand years and industrial-era greenhouse gas emissions. This sequestration potential, when applied to up to 5 billion hectares of degraded grassland soils, could return 10 or more gigatons of excess atmospheric carbon to the terrestrial sink annually thereby lowering greenhouse gas concentrations to pre-industrial levels in a matter of decades. This while restoring agriculture productivity, providing jobs for thousands of people in rural communities, supplying high quality protein for millions, and enhancing wildlife habitat and water resources.[12]

    In all three regeneration systems, permanently renewing carbon pools, especially lower ones, function to provide the same increase of sites for bacteria and mineral capture that biochar offers. Not often mentioned in the biochar literature is the fact that all soils with appreciable clay content perform the same mineral and microbial site functions.

    However, high organic matter soils created by these regeneration systems go beyond the functions of biochar to provide better tilth, air and water capacity, and an essential feedstock of energy and minerals in organic form for the growth of the soil microbial food web. In that sense a dense soil microbial/fungal community acts like a keystone species in regard to ecosystem function. Without decomposing organic matter, soil microbial population densities remain relatively low. The crucial importance of high microbial populations in the soil food web to overall agroecosystem health and productivity has finally been recognized by the agricultural research community after generations of focus on only the chemistry.

    2. Charcoal is more stable than more naturally occurring carbonaceous compounds, and therefore a better option for sequestration to mitigate climate change.

    About That Carbon Cycle: A proper comparison of biochar with other methods described above requires at least an elementary understanding of the carbon cycle that must work properly in all of them. First, carbon is lost to the atmosphere in all processes that reduce complex carbonaceous organic matter to simpler forms – everything from the rapid, violent extreme of normal burning to pyrolysis to bacterial decomposition, to metabolism in humans and other animals. So those losses need to be subtracted from any calculations of the sequestration potential of a system that uses any of the above biomass reduction processes.

    Second, soil organic matter decomposition proceeds through stages that scientists describe as carbon pools of increasing carbon loss as CO2 but also increasing stability in the carbon that remains. A typical biochar research paper states,  “Although little research has been published on the long-term stability of biochar, studies suggest a mean residence time (MRT) for charcoal in soil in the order of millennia, compared to 50 y for bulk soil organic matter.”[13] So apparently the lowest, most stable soil carbon pools from microbial decomposition cannot match the stability of the black carbon in biochar. However, what is missed in the comparison is the ability of managers to constantly renew soil organic matter and maintain rebuilt soil carbon levels and therefore the sequestration, once brought to full potential, as in the agroecosystem designs already described above. Hence the constant renewal in these systems serves the same stability/sequestration function of biochar, and provides many more benefits as well.

    3. Some of the gaseous byproducts of biochar production could replace fossil fuel use, also mitigating climate change.

    First, let’s take a closer look at pyrolysis. Burning anything at all seems an unlikely cure for an overheating planet. No matter how it is done, or what is burned, combustion creates pollution — air pollution, particulates, ashes, various toxins and soot, the second largest warming agent created after C02. Pyrolysis is much dirtier in particulate and other pollutions than normal high-oxygen clean burning.

    As already mentioned, pyrolysis also destroys some of the nutrient-value in the biomass feedstock. Even at the lowest temperatures adopted recently in the production of biochar, 50% of the nitrogen in the biomass can be lost. Compare that with well-made (high C/N ratio) compost that can retain larger quantities of nitrogen.

    Also, a trade-off exists between fuel and biochar production. Pyrolysis can be done at different temperatures with more biochar production at lower temperatures and more fuel production at higher ones. The same process cannot maximize both.

    In the evaluation of any complex production process through the ecosystemic lens, a full life cycle calculation is called for, not only of energy and carbon outcomes, but all other short and long term effects on the health of larger systemic wholes. I found only one such evaluation of pyrolysis in the literature:[14]

    Yet even this attempt is flawed: Where in this picture is the 40% of co2 in the biomass feedstock that is lost to the atmosphere as greenhouse gas during pyrolysis?

    The real agenda of the business community for biochar seems to be the creation of yet another agrofuel boondoggle, dressed up in the green garb of carbon sequestration to save the climate. The capture of fuel gases as a byproduct of pyrolysis will not scale up to any significant degree without further expropriating agricultural land, especially in less developed countries. Already the activists and critics who exposed the disastrous consequences, particularly for the less developed world, of the corn ethanol and other agrofuel projects, are exposing attempts at land grabs for the harvest of biomass feedstocks in the global south for industrial scale pyrolysis and fuel production.

    A paper entitled “Land Grabs for Biochar” describes “carbon grabs” as one of the most recent forms of land grab being resisted by the less developed countries, partly because it “threatens a re-run of ‘biofuels vs. food’ controversies and resource appropriations, yet with a new twist as carbon grabs for other biofuels and for biochar feedstocks threaten to compete with each other too. NGO activists and African governments alike have seized on the land grab spectre to mount vociferous critiques of biochar as a whole.”[15] To what degree that “spectre” will fulfill itself is unclear due to many variables, not least the grinding to a halt of the industrial civilization juggernaut as scarcity looms for its main energy source, oil.

    There exists one method of biofuel production that, unlike biochar, returns a large amount of mineral fertility as a soil amendment, and can be designed to serve useful functions as an integral part of an agroecosystem when kept small in scale. Anaerobic digesters small and simple enough to have seen wide adoption in peasant communities on several continents produce enough methane for families to cook and light with, and fit well into the carbon cycle of farms that produce wet manures such as from pigs, poultry, and humans. Figure 1 is an example of such a design.

    Part of the hype of biochar promotion is its proposed provision of carbon credits. As one scholarly paper states, “Bio-char soil management systems can deliver tradable C emissions reduction, and C sequestered is easily accountable, and verifiable.”[16] This too is surprising in a scientific paper, because carbon trading has been exposed for years as a scam used by big business to greenwash itself while allowing it to continue to pollute.

    What seekers of alternate energy sources fail to understand is that the present excessive level of energy consumption is the problem. It inevitably entails the resource depletion and damage to essential ecological services that have initiated catabolic collapse of industrial civilization and the way of life it supports. Resource analyst Tim Murray conveys well the meaning of the limits to growth in his blog, Canada the Sinking Lifeboat: “The greatest calamity that could ever be inflicted on human and non-human species alike would be the discovery of an abundant, cheap and perpetual energy source, or unlimited availability of cheap food and universal and uninhibited access to bountiful water supplies.”[17] Those who fight off the fog of denial and willful ignorance that currently blankets most of humanity know that to end the suicidal industrial destruction of the planetary resource base, we need to “power down”[18], not try to replace current energy sources with others.

    Niche uses for biochar

    Arguably there exist niche uses for biochar in less developed countries where most cooking is done by burning biomass. Cookstoves designed by Worldstove for less developed countries are an example. They burn the combustible gases from pyrolysis to cook, leaving biochar instead of ash for the soil. If biochar claims are true, the longterm benefits of charcoal are potentially better than ash as a soil amendment. Biochar cookers have tradeoffs and limitations: hot burning stoves reduce particulate air pollution and cook faster but leave less biochar. Cookstoves that use pyrolysis produce biochar but cook more slowly and still smoke somewhat. However, better cooking solutions than biochar cookers exist. Solar cookers use simple technology and materials, directly address forest depletion, and eliminate biomass burning and its pollution and soil carbon loss entirely.

    Biochar also has been proposed as a transitional stop-gap measure. Many areas of production in industrial society are chewing through the global natural resource base at a rate that is unsustainable for much longer. But as long as their termination is not politically feasible, conversion and sequestration of their byproducts (termed “wastes” in the language of the ecologically uninformed) as charcoal makes some sense. Low temperature pyrolysis of papermill byproducts is an example.[19]

    Conclusion

    Apart from the major objections described above, the truth of the claimed benefits to agriculture from biochar application is far from proven. According to one review of the literature, “Fifty percent of the reviewed studies reported yield increases after black carbon or biochar additions, with the remainder of the studies reporting alarming decreases to no significant differences.”[20] Also, in a German comparison of plant growth with pure compost vs. a mixture of compost and biochar, the pure compost trial came out ahead.[21]

    Digging deep into one scientific paper I found a long list of sustainability criteria that pose obstacles to adoption.

    “Biochar can be produced sustainably or unsustainably. Our criteria for sustainable biochar production require that biomass procured from agricultural and silvicultural residues be extracted at a rate and in a manner that does not cause soil erosion or soil degradation; crop residues currently in use as animal fodder not be used as biochar feedstock; minimal carbon debt be incurred from land-use change or use of feedstocks with a long life expectancy; no new lands be converted into biomass production and no agricultural land be taken out of food production; no biomass wastes that have a high probability of contamination, which would be detrimental to agricultural soils, be used; and biomass crop production be limited to production on abandoned agricultural land that has not subsequently been converted to pasture, forest or other uses. We further require that biochar be manufactured using modern technology that eliminates soot, CH4 and N2O emissions while recovering some of the energy released during the pyrolysis process for subsequent use.”[22]

    In sum, the biochar fad seems to be one more of the increasing frenzy of wishful attempts to prolong the inevitable decline of the industrial way of life. Biochar is promoted as one more technological silver bullet. Seen through the ecosystemic lens, silver bullets don’t exist. Seen through the ecosystemic lens, we do not have a shortage of anything, we have a longage of expectations. Hence the human overshoot of planetary carrying capacity and its consequences – the accelerating destruction of the natural resource base. We need to stop grasping at straws like agrofuel from pyrolysis and reduce our energy use to the level for which the biosphere was designed.

    http://store.elsevier.com/product.jsp?isbn=9780123855381

    [2] http://www.css.cornell.edu/faculty/lehmann/research/biochar/biocharmain.html

    [3] Capitalist manufacture of desire trains consumers to override all attempts to conserve resources by making gains in efficiency or development of alternatives. Conservation gains are wiped out by increased consumption. William Stanley Jeavons first explained this historical human behavior pattern in 1865, in regard to coal consumption.

    [4] Braumgart, Michael, and William McDonough. 2002. Cradle to Cradle: Remaking the Way We Make Things. Northpoint Press. 2002.

    http://www.amazon.com/Cradle-Remaking-Way-Make-Things/dp/0865475873/ref=sr_1_1?s=books&ie=UTF8&qid=1437087012&sr=1-1&keywords=cradle+to+cradle

    [5] Lehmann, Johannes, et al. 2006. Bio-char sequestration in terrestrial ecosystems – a review. Mitigation and Adaptation Strategies for Global Change, Vol. 11, Issue 2, 2006.

    http://link.springer.com/article/10.1007/s11027-005-9006-5

    [6] Sommer, S.G. 2001. Effect  of  composting  on  nutrient  loss  and  nitrogen availability  of  cattle  deep  litter. European  Journal  of  Agronomy 14  (2001)  123 – 133.

    http://mie.esab.upc.es/ms/informacio/residus_ramaders/Nutrient%20loss%20composting%20manures.pdf

    [7] Sommer, S.G. and P. Dahl. 1999. Nutrient and Carbon Balance during the Composting of Deep Litter. J. Agric. Engng. Res., 74, 145-153. 1999.

    http://mie.esab.upc.es/ms/informacio/residus_ramaders/CN%20balance%20deep%20composting.pdf

    [8] Ibid.

    [9] Gaskin, J.W., et al. 2008. Effect of low temperature pyrolysis conditions on biochar for agricultural use. Transactions of the ASABE, vol. 51(6), 2061-2069. 2008. http://www.researchgate.net/publication/237079730_Effect_of_Low-Temperature_Pyrolysis_Conditions_on_Biochar_for_Agricultural_Use

    [10] http://saveoursoils.com/userfiles/downloads/1398168006-RegenOrgAgricultureAndClimateChange_20140418.pdf

    [11] Voisin, André. 1959. Grass Productivity. Island Press, 2nd edition, 1988.

    http://www.amazon.com/Grass-Productivity-Conservation-Classics-Voisin/dp/0933280645/ref=sr_1_1?ie=UTF8&qid=1436370902&sr=8-1&keywords=grass+productivity

    [12] Savory Institute. 2013. Restoring the climate through capture and storage of soil carbon through holistic planned grazing. http://savory.global/assets/docs/evidence-papers/restoring-the-climate.pdf

    [13] Shackley, Simon, and Saran Sohi, eds. 2010. An assessment of the benefits and issues associated with the application of biochar to soil. UK Biochar Research Centre, School of GeoSciences, University of Edinburgh. 2010

    http://www.researchgate.net/profile/Simon_Shackley/publication/269706579_AN_ASSESSMENT_OF_THE_BENEFITS_AND_ISSUES_ASSOCIATED_WITH_THE_APPLICATION_OF_BIOCHAR_TO_SOIL_A_report_commissioned_by_the_United_Kingdom_Department_for_Environment_Food_and_Rural_Affairs_and_Department_of_Energy_and_Climate_Change_Contributing_Authors/links/54943fe80cf2d593b96106d0.pdf#page=6

    [14] Roberts, K., et al, 2010. Life Cycle Assessment of Biochar Systems: estimating the energetic, economic and climate change potential. Environmental Science and Technology. Vol. 44 (2), Pp. 827–833. http://pubs.acs.org/doi/abs/10.1021/es902266r

    [15] Leach, Melissa et al. 2011. Landgrabs for biochar: narratives and counter narrratives in africa’s emerging biogenic carbon sequestration economy. Conference on Global Land Grabbing. University of Sussex, April 2011. http://www.future-agricultures.org/papers-and-presentations/conference-papers-2/1091-land-grabs-for-biochar-narratives-and-counter-narratives-in-africa-s-emerging-biogenic-carbon-seque/file

    [16] Ibid.

    [17] http://sinkinglifeboat.blogspot.ch/2010/02/ten-ecological-reasons-to-oppose-mass.html

    [18] Heinberg, Richard. 2004. Powerdown: Options and Actions for a Post-Carbon World. New Society Publishers, 2004. http://www.amazon.com/Powerdown-Options-Actions-Post-Carbon-World/dp/0865715106/ref=tmm_pap_title_0?_encoding=UTF8&sr=&qid=

    [19] Van Swieten, L. et al. 2009. Effects of biochar from slow pyrolysis of papermill waste on agronomic performance and soil fertility. Plant and Soil, Vol. 327, Issue 1-2, February 2010.

    http://link.springer.com/article/10.1007/s11104-009-0050-x

    [20] Spokas, Kurt, et al. 2012. Biochar : a synthesis of its agronomic impact beyond carbon sequestration. J. Environ. Quality, 41, 2012. http://www.extension.uidaho.edu/nutrient/culturalpractices/PDF/Biochar%20A%20synthesis%20of%20its%20agronomic%20Impact%20beyond%20carbon%20sequestration..pdf

    [21] Schulz, Hardy and Bruno Glazer. 2012. Effects of biochar compared to organic and inorganic fertilizers on soil quality and plant growth in a greenhouse experiment. J.Plant Nutr. Soil Sci., 000, 1-13, 2012.   http://www.researchgate.net/profile/Hardy_Schulz/publication/259451692_Effects_of_biochar_compared_to_organic_and_inorganic_fertilizers_on_soil_quality_and_plant_growth_in_a_greenhouse_experiment/links/004635373280742279000000.pdf

    [22] Woolf, Dominic, et al. 2010. Sustainable biochar to mitigate climate change. Nature Communications, v1, n5. 2010. http://www.nature.com/ncomms/journal/v1/n5/pdf/ncomms1053.pdf

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    Biochar Market Development Trends, Key Manufacturers And Competi – 100.7 KFM-BFM

    31 October, 2017
     

    Biochar Market report presents a detailed analysis of the industry by size, growth rate, key players, regions, product types & applications, the report also assesses key factors that affected market growth and with the help of previous figures this report expands current scenario and forecast of Biochar industry.

    In this report, the global Biochar market is valued at USD XX million in 2017 and is projected to reach USD XX million by the end of 2021, growing at a CAGR of XX% during the period 2017 to 2021.

    The major players profiled in Biochar Market report are:

    Get PDF Sample of Report @ https://www.absolutereports.com/enquiry/request-sample/11210720 

    Biochar Market report gives insights of Industrial Chain, Major Player’s Market Share and Upstream raw materials suppliers Involved in Biochar Market based on Industrial Chain Analysis, Production Process Analysis, Raw Material Cost & Manufacturing Cost Structure of Biochar, Source of Raw Materials for Major Manufacturers present in Biochar Industry till 2017.

    In Biochar Market Report there is section which analyses Development Trend of Biochar industry by considering factors such as Capacity Production, Production Market Share, Demand and Cost Price Production Value Profit of Biochar.

    Product categories:

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    Major Applications/end users:

    Biochar Industry Segment by Countries: United States, Germany, United Kingdom, Japan, South Korea and China.

    Market highlights following key factors: Complete analysis of Biochar industry, which includes an assessment of the parental market, Emerging trends by types and regional market, Substantial variations in Biochar market dynamics, Biochar Market shares and approaches of key players in Biochar market.

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    The Biochar Market report offers a complete assessment of the industry. The projections included in the report have been determined utilizing demonstrated research philosophies and presumptions. Thusly, the exploration report fills in as a vault of examination and data for each feature of the market, including Regional markets, methodology, types, and applications.

     

     

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    Granular Biochar Market 2017 Global Manufactures : Kina, ElementC6, BlackCarbon, Biochar Now …

    31 October, 2017
     

    The Granular Biochar report provides an elite tool for evaluating the market and supporting the preemptive and tactical decision-making. The report divulges the realistic data and an all-inclusive exploration of the Granular Biochar market. The report offers a basic framework of the Granular Biochar industry, including classifications, applications, definitions, and industry chain structure. It also represents an in-depth evaluation of the Granular Biochar market and includes significant insights, facts, and statistical & industry-validated statistics of the global market.

    The report further provides the worldwide segmentation of the market based on the applications, end-users, technology, types, and geography. It also embraces comprehensive information on every single segment of the Granular Biochar market. Further, it encompasses the data about a number of factors that influence the growth of the overall market as well as its segments. The report has been made based on a wide-ranging survey of the market with feedbacks from industry analysts and experts. The detailed exploration of the market is done by two ways, explicitly, qualitative and quantitative. In addition, the report includes the landscape and growth predictions of the market over the coming years.

    Request Sample Report Granular Biochar Market @ http://www.marketresearchstore.com/report/global-granular-biochar-market-professional-survey-report-2017-173134#RequestSample

    Moreover, the report highlights the key market players leading globally with information such as company profiles, market share, contact details, product images & specifications, and sales. The exploration also comprises forecasts and historic data that make the report an invaluable reference for consultants, product & sales managers, marketing, industry executives, analysts, and other persons looking for vital industry data in readily manageable documents with prominently demonstrated graphs, figures, and tables.

    Granular Biochar Market report by region includs major Countries including
    1. North America
    2. China
    3. Europe
    4. Southeast Asia
    5. Japan
    6. India

    Leading Manufacturers Analysis in Global Granular Biochar Market 2017:
    • Kina
    • ElementC6
    • BlackCarbon
    • Biochar Now
    • Carbon Gold

    Furthermore, the report also evaluated leading points of the market, which includes revenue, demand, price, cost, import, capacity utilization rate, gross margin, consumption, export, production, supply, growth rate, gross, market share, capacity, and so on. Numerous analytical tools were used in the research methodology for the market study so as to obtain thorough data and valuation of the global players in the industry and their scope in the market.

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    becwqj how much and why does biochar reduce N2O emissions

    31 October, 2017
     

    Support Gray Fox Archery


    Cool Planet Earns USDA Certified Biobased Product Label

    31 October, 2017
     

    GREENWOOD VILLAGE, Colo., Oct. 31, 2017 /PRNewswire/ — Cool Planet announced today that it has earned the U.S. Department of Agriculture (USDA) Certified Biobased Product label. This will allow the company to display a unique USDA label on it’s Cool Terra Organic product that highlights its content as 100% biobased. The USDA certification provides further evidence for the sustainability of Cool Terra Organic as a soil amendment.

    Cool Terra featuring Engineered Biocarbon technology is a consistent, durable, and stabilized form of carbon produced from biochar which can increase plant yield by improving soil structure, increasing water and nutrient availability, and creating a unique habitat for soil microbes. Cool Terra Organic is available for sale in all 50 states, is OMRI listed for organic use, and is registered as an organic input material by both the California Department of Food & Agriculture (CDFA) and the Washington State Department of Agriculture (WSDA). 

    “We admire the USDA for their efforts to promote sustainable agricultural practices and products,” said Jim Loar, Cool Planet’s CEO. “Our customers know that Cool Terra can help improve soil health, and this label will give them confidence that our product is made with renewable resources and can play a role in helping reduce greenhouse gases.”

    Available through an extensive distribution network, Cool Terra Organic is used to support soil vitality and add value in specialty and commodity crop farming, turf and lawn care, tree transplanting, nursery and ornamental operations, green roofing, and LEED / SITES certification projects. “We are proud to offer a 100% USDA certified Biobased product, and believe it is another step forward in helping growers achieve sustainability and profitability,” said Loar.

    Third-party verification for a product’s biobased content is administered through the USDA BioPreferred Program, an initiative created by the 2002 Farm Bill (and most recently expanded by the 2014 Farm Bill). One of the goals of the BioPreferred Program is to increase the development, purchase and use of biobased products. Biobased products, through petroleum displacement, have played an increasingly important role in reducing greenhouse gas emissions that exacerbate global climate change.

    “We applaud Cool Planet Energy Systems, Inc. for earning the USDA Certified Biobased Product label,” said Kate Lewis, USDA BioPreferred Program. “Products from Cool Planet Energy Systems, Inc. are contributing to an ever-expanding marketplace that adds value to renewable agriculture commodities, creates jobs in rural communities, and decreases our reliance on petroleum.”

    About Cool Planet
    Cool Planet is an agricultural technology company selling Engineered Biocarbon products designed to optimize agricultural systems. The company’s first commercial product line is their award-winning, proprietary Cool Terra® featuring Engineered Biocarbon™ technology. Cool Terra delivers sustainability and profitability for agriculture, landscape, turf, nursery and ornamental markets. Cool Terra was named a Gold Edison Award winner for innovation in agricultural technology in 2015. Learn more about Cool Terra Engineered Biocarbon technology at coolterra.com, on Twitter at @CoolPlanet and on Facebook at facebook.com/CoolTerraNews. Contact the company about Cool Terra at  rel=”nofollow”>coolterra@coolplanet.com or (888) 564-9332.

    About the USDA BioPreferred Program and Certified Biobased Product label
    The BioPreferred Program is a USDA-led initiative that assists the development and expansion of markets for biobased products. The BioPreferred Program is transforming the marketplace for biobased products through two initiatives: mandatory purchasing requirements for Federal Agencies and Federal contractors and voluntary product certification and labeling.

    Biobased products span a diverse range of applications, such as lubricants, cleaning products, chemicals and bioplastics. The USDA Certified Biobased Product label communicates a product’s biobased content. Expressed as a percentage, biobased content is the ratio of non-fossil organic carbon (new organic carbon) to total organic carbon in a product. New organic carbon is derived from recently-created materials. The total organic carbon in a product consists of new organic carbon and old organic carbon that originates from fossil carbon materials, such as petroleum, coal, or natural gas. Approximately 2,800 products have earned the USDA Certified Biobased Product label as of August 2016. To learn more about the USDA Certified Biobased Product label please visit www.biopreferred.gov, and follow on Twitter at http://twitter.com/BioPreferred.

     

    View original content:http://www.prnewswire.com/news-releases/cool-planet-earns-usda-certified-biobased-product-label-300546481.html

    SOURCE Cool Planet


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