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Science

  • Graphitized Biochar Increases Electrical Conductivity by 2.64-Fold and Enhances Hydroxyl Radical Production by 54.9 Percent for Complete Soil Antibiotic Removal

    Graphitized Biochar Increases Electrical Conductivity by 2.64-Fold and Enhances Hydroxyl Radical Production by 54.9 Percent for Complete Soil Antibiotic Removal

  • Nanobiochar Enhances Soil Nutrient Retention, Boosts Crop Yields by 18 Percent, and Cuts Heavy Metal Uptake by up to 95 Percent

    Nanobiochar Enhances Soil Nutrient Retention, Boosts Crop Yields by 18 Percent, and Cuts Heavy Metal Uptake by up to 95 Percent

  • Microplastics Can Inflate Apparent Soil Organic Carbon Estimates by 3 to 15 Megagrams per Hectare and Compromise Biochar Sequestration Accounting

    Microplastics Can Inflate Apparent Soil Organic Carbon Estimates by 3 to 15 Megagrams per Hectare and Compromise Biochar Sequestration Accounting

  • Intrinsic Redox Superiority Drives Biochar Beyond Activated Carbon in Electron Transfer Applications

    Intrinsic Redox Superiority Drives Biochar Beyond Activated Carbon in Electron Transfer Applications

  • Sand Filters Amended with 10% Brewery Waste Biochar Boost Bacterial Removal to 94.1%

    Sand Filters Amended with 10% Brewery Waste Biochar Boost Bacterial Removal to 94.1%

  • Comparative Evaluation of Pristine Biochar and Advanced Composites in Water Treatment

    Comparative Evaluation of Pristine Biochar and Advanced Composites in Water Treatment

  • Mathematical Models Reveal Up to 3.82 Millimoles Per Gram Carbon Capture Potential in Biochar

    Mathematical Models Reveal Up to 3.82 Millimoles Per Gram Carbon Capture Potential in Biochar

  • Chemically Activated Corn Biochar Achieves High Dyes Removal Capacities

    Chemically Activated Corn Biochar Achieves High Dyes Removal Capacities

  • Engineered Biochar Achieves Ninety-Nine Percent Lead and Eighty-Eight Percent Chromium Removal in Wastewater

    Engineered Biochar Achieves Ninety-Nine Percent Lead and Eighty-Eight Percent Chromium Removal in Wastewater

  • Global Warming Increases Carbon Dioxide Release from Biochar-Amended Cropland Soils by 117.5 Percent

    Global Warming Increases Carbon Dioxide Release from Biochar-Amended Cropland Soils by 117.5 Percent

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John Webster – Operations
Timothy Harfield – Founding Editor


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