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electron transfer

  • Aging Increases Low-Temperature Biochar Conductivity by Over One Thousand Times While Reducing High-Temperature Biochar Performance

    Aging Increases Low-Temperature Biochar Conductivity by Over One Thousand Times While Reducing High-Temperature Biochar Performance

  • Direct Degradation by Biochar Reaches 40% of Total Organic Pollutant Removal, Driven by Electron-Donating Capacity

    Direct Degradation by Biochar Reaches 40% of Total Organic Pollutant Removal, Driven by Electron-Donating Capacity

  • Conductive Biochar Increases Methane Production in Paddy Soils by Up to 69% by Acting as a “High-Way” for Electrons

    Conductive Biochar Increases Methane Production in Paddy Soils by Up to 69% by Acting as a “High-Way” for Electrons

  • High Biochar Conductivity Increases Methane Generation in Paddy Soil by 69%

    High Biochar Conductivity Increases Methane Generation in Paddy Soil by 69%

  • Adding Graphene-modified Biochar to Paddy Soil Increases Methane Production by 69% by Enhancing Electron Transfer

    Adding Graphene-modified Biochar to Paddy Soil Increases Methane Production by 69% by Enhancing Electron Transfer

  • A New Substrate Reduces Nitrous Oxide Emissions by 85.45% in Wastewater Treatment

    A New Substrate Reduces Nitrous Oxide Emissions by 85.45% in Wastewater Treatment

  • Novel Biochar-CN Photocatalyst Boosts Pollutant Degradation Rate by 15.43x

    Novel Biochar-CN Photocatalyst Boosts Pollutant Degradation Rate by 15.43x

  • Enhancing Water Purification: Iron Biochar Improves Organic Pollutant Breakdown by up to 100%

    Enhancing Water Purification: Iron Biochar Improves Organic Pollutant Breakdown by up to 100%

  • Modified Biochar Reduces Pathogenic Fungi by Up to 17.18% and Enhances Ginsenoside Rb1 Removal

    Modified Biochar Reduces Pathogenic Fungi by Up to 17.18% and Enhances Ginsenoside Rb1 Removal

  • Nanoparticle-Biochar Composites Enhance Methane Production by 42% While Decreasing Membrane Fouling by 20-65% in Bioreactors

    Nanoparticle-Biochar Composites Enhance Methane Production by 42% While Decreasing Membrane Fouling by 20-65% in Bioreactors

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John Webster – Operations
Timothy Harfield – Founding Editor


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