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  • Biochar Aging Stabilizes Antibiotic Retention in Soil Through Structural Evolution

    Biochar Aging Stabilizes Antibiotic Retention in Soil Through Structural Evolution

  • Green Engineering of Balanites aegyptiaca-Derived Biochar Exhibits Superior Nitrophenol Removal

    Green Engineering of Balanites aegyptiaca-Derived Biochar Exhibits Superior Nitrophenol Removal

  • Biochar-Integrated Systems Achieve Up to 98% Nitrate Removal from Contaminated Water

    Biochar-Integrated Systems Achieve Up to 98% Nitrate Removal from Contaminated Water

  • Composite Waste Material Using Steel Slag and Corn Straw Biochar Cuts Toxic Arsenic in Rice Soil by Up to 55%

    Composite Waste Material Using Steel Slag and Corn Straw Biochar Cuts Toxic Arsenic in Rice Soil by Up to 55%

  • Post-Pyrolysis Modification Boosts Nitrate Removal by Rapeseed Biochar to Over 70%

    Post-Pyrolysis Modification Boosts Nitrate Removal by Rapeseed Biochar to Over 70%

  • Biochar Field Aging for One Year Increases Antibiotic Retention in Soil by up to 25%

    Biochar Field Aging for One Year Increases Antibiotic Retention in Soil by up to 25%

  • Biochar from Perilla frutescens Stems Achieves 75.74 mg/g Cadmium Adsorption Capacity in Industrial Wastewater

    Biochar from Perilla frutescens Stems Achieves 75.74 mg/g Cadmium Adsorption Capacity in Industrial Wastewater

  • The Dark Carbon Powering a Net-Zero Future

    The Dark Carbon Powering a Net-Zero Future

  • Element Doping Quadruples Biochar’s Carbon Sequestration and Enhances Energy Storage Performance

    Element Doping Quadruples Biochar’s Carbon Sequestration and Enhances Energy Storage Performance

  • Biochar-Microbial Systems Offer Up to 90% Pollutant Removal and Enhanced Stability

    Biochar-Microbial Systems Offer Up to 90% Pollutant Removal and Enhanced Stability

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