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Waste Management

  • Ozone-Modified Biochar from Acacia Sawdust Achieves 32.38 mg/g Nitrogen Adsorption from Pig Wastewater

    Ozone-Modified Biochar from Acacia Sawdust Achieves 32.38 mg/g Nitrogen Adsorption from Pig Wastewater

  • Cotton Straw Biochar Reduces Methane Emissions in Dairy Cow Rumen by Up to 10.9%

    Cotton Straw Biochar Reduces Methane Emissions in Dairy Cow Rumen by Up to 10.9%

  • Synergistic Biochar-Ferrate System Achieves Record  Production of Valuable Medium-Chain Fatty Acids

    Synergistic Biochar-Ferrate System Achieves Record Production of Valuable Medium-Chain Fatty Acids

  • Hazelnut Shell Biochar Yields 31.64 MJ/kg Energy Density, Outperforming Wood Pellets

    Hazelnut Shell Biochar Yields 31.64 MJ/kg Energy Density, Outperforming Wood Pellets

  • Biochar Addition Increases Methane Production by 51.7% and Stabilizes Digestion at 50% Higher Loading Rates

    Biochar Addition Increases Methane Production by 51.7% and Stabilizes Digestion at 50% Higher Loading Rates

  • Transforming Agricultural Waste into Fertilizer: Cutting GHG Emissions by up to 30% and Boosting Nutrient Recovery

    Transforming Agricultural Waste into Fertilizer: Cutting GHG Emissions by up to 30% and Boosting Nutrient Recovery

  • Optimizing Agricultural Waste: Pyrolyzing Barley Straw-Bran Pellets  At High Temperature Triples Total Pore Volume for Advanced Sorbent Material

    Optimizing Agricultural Waste: Pyrolyzing Barley Straw-Bran Pellets At High Temperature Triples Total Pore Volume for Advanced Sorbent Material

  • Biochar from Invasive Weeds Achieves 89% COD and 88% BOD Removal, Making it the Top Choice for Municipal Wastewater Treatment

    Biochar from Invasive Weeds Achieves 89% COD and 88% BOD Removal, Making it the Top Choice for Municipal Wastewater Treatment

  • Straw Innovations and Takachar Collaborate to Boost Rice Yields and Abate Smog in India

    Straw Innovations and Takachar Collaborate to Boost Rice Yields and Abate Smog in India

  • Life Cycle Assessment Shows Bio-Kiln  Reduces Global Warming Potential by 8.51%  in Tree Stump Biochar Production

    Life Cycle Assessment Shows Bio-Kiln Reduces Global Warming Potential by 8.51% in Tree Stump Biochar Production

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John Webster – Operations
Timothy Harfield – Founding Editor


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