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adsorption

  • CatBoost AI Model Hits 98.8% (R2) Accuracy in Predicting Water-Cleaning Biochar Performance

    CatBoost AI Model Hits 98.8% (R2) Accuracy in Predicting Water-Cleaning Biochar Performance

  • Invasive Plant Biochar Boosts Aspirin Removal by Over 160%

    Invasive Plant Biochar Boosts Aspirin Removal by Over 160%

  • How Engineered Biochar Achieves >90% PFAS Removal

    How Engineered Biochar Achieves >90% PFAS Removal

  • Advancements in Biochar Functionalization Boost H2S Adsorption Capacity by Over 2,800%

    Advancements in Biochar Functionalization Boost H2S Adsorption Capacity by Over 2,800%

  • Nanocomposites Achieve Near-Perfect Dye Removal: Zinc Ferrite/Biochar Hits 100% Degradation in 60 Minutes

    Nanocomposites Achieve Near-Perfect Dye Removal: Zinc Ferrite/Biochar Hits 100% Degradation in 60 Minutes

  • Engineered Biochar Achieves 98% Dye Removal: A Sustainable Strategy for Clean Water

    Engineered Biochar Achieves 98% Dye Removal: A Sustainable Strategy for Clean Water

  • N, S Co-Doped Biochar (1480.10 mg/g ) and DFT Modeling Drive 17.5x Improvement in Antibiotic Adsorption Capacity

    N, S Co-Doped Biochar (1480.10 mg/g ) and DFT Modeling Drive 17.5x Improvement in Antibiotic Adsorption Capacity

  • Engineered Biochar Achieves Up to 100% Nitrate Removal: Biochar-Integrated Wetlands Boost Efficiency to Over 80%

    Engineered Biochar Achieves Up to 100% Nitrate Removal: Biochar-Integrated Wetlands Boost Efficiency to Over 80%

  • Enhanced Biochar Boosts Odorous Gas Adsorption: Rice Husk and Walnut Shell Derivatives Show Up to 8.3-Fold and 2.45-Fold Improvement for CH3​SH and H2​S

    Enhanced Biochar Boosts Odorous Gas Adsorption: Rice Husk and Walnut Shell Derivatives Show Up to 8.3-Fold and 2.45-Fold Improvement for CH3​SH and H2​S

  • IoT and Biochar-Zeolite Catalysts: A Smart Solution for Batik Wastewater

    IoT and Biochar-Zeolite Catalysts: A Smart Solution for Batik Wastewater

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