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Science

  • Magnesium-Impregnated Rice Husk Biochar Sequentially Treats 4.32 Cubic Meters of Wastewater Daily Before Soil Application Yields a Potential Reduction of 1.34 Kilograms of Carbon Dioxide Equivalent Per Kilogram

    Magnesium-Impregnated Rice Husk Biochar Sequentially Treats 4.32 Cubic Meters of Wastewater Daily Before Soil Application Yields a Potential Reduction of 1.34 Kilograms of Carbon Dioxide Equivalent Per Kilogram

  • Agricultural and Forestry Waste Biochar Contains High Carbon Content to Enable Complex Adsorption Pathways for Multi-Mechanism Antibiotic Removal

    Agricultural and Forestry Waste Biochar Contains High Carbon Content to Enable Complex Adsorption Pathways for Multi-Mechanism Antibiotic Removal

  • Multi-Year Peanut Shell Biochar Applications at Nine Hundred Kilograms per Hectare Enhance Soil Health and Improve Bacterial Network Complexity Across Chinese Tobacco Fields

    Multi-Year Peanut Shell Biochar Applications at Nine Hundred Kilograms per Hectare Enhance Soil Health and Improve Bacterial Network Complexity Across Chinese Tobacco Fields

  • High-Rate Wood Biochar applied at Three Percent Divergently Alters Soil Nitrous Oxide Temperature Sensitivity in Agricultural and Forest Ecosystems

    High-Rate Wood Biochar applied at Three Percent Divergently Alters Soil Nitrous Oxide Temperature Sensitivity in Agricultural and Forest Ecosystems

  • Co-Application of Tender Coconut Husk Biochar and Specialized Bacillus Strains Yields a Twofold Return on Investment in Sandy Soils

    Co-Application of Tender Coconut Husk Biochar and Specialized Bacillus Strains Yields a Twofold Return on Investment in Sandy Soils

  • Metal Oxide Catalysts Reduce Toxic Chemical Emissions During Composite Processing by 15% to 20%

    Metal Oxide Catalysts Reduce Toxic Chemical Emissions During Composite Processing by 15% to 20%

  • Beef Cattle Manure Biochar Boosts Fine Soil Water Holding Capacity by up to 44%

    Beef Cattle Manure Biochar Boosts Fine Soil Water Holding Capacity by up to 44%

  • Canna indica Biochar and Ozone Process Lowers Water Contamination by over 96%

    Canna indica Biochar and Ozone Process Lowers Water Contamination by over 96%

  • Breaking the Trade-off Between Reactivity and Stability in Soil Humic Acid

    Breaking the Trade-off Between Reactivity and Stability in Soil Humic Acid

  • Turning Lavender Waste Into Valuable Biochar and Lessening Environmental Burdens

    Turning Lavender Waste Into Valuable Biochar and Lessening Environmental Burdens

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