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adsorption

  • Brown Macroalgae Biochar Impregnated with Iron Oxide Achieves 90.2% Fluoride Removal from Contaminated Water

    Brown Macroalgae Biochar Impregnated with Iron Oxide Achieves 90.2% Fluoride Removal from Contaminated Water

  • Activated Biochar from Olive Waste Achieves High Adsorption Capacity of 147 mg/g for Ciprofloxacin

    Activated Biochar from Olive Waste Achieves High Adsorption Capacity of 147 mg/g for Ciprofloxacin

  • Orange Peel Nanobiochar Adsorbs 58.5 mg/g of Lithium at 700°C for Sustainable Wastewater Treatment

    Orange Peel Nanobiochar Adsorbs 58.5 mg/g of Lithium at 700°C for Sustainable Wastewater Treatment

  • Magnesium-Modified Biochar Reduces N and P Leaching by 31-51% and Increases Pakchoi Yield by 17%

    Magnesium-Modified Biochar Reduces N and P Leaching by 31-51% and Increases Pakchoi Yield by 17%

  • LDO Composites Outperform LDH for Dye Removal, Achieving Adsorption Capacities up to 4841 mg/g

    LDO Composites Outperform LDH for Dye Removal, Achieving Adsorption Capacities up to 4841 mg/g

  • Carboliva: Olive By-products and the Expanding Horizon of Biochar

    Carboliva: Olive By-products and the Expanding Horizon of Biochar

  • Optimized Biochar from Tea Waste Achieves 82.66% Pollutant Removal, With RNN Model Predicting Performance at an R2 of 0.960

    Optimized Biochar from Tea Waste Achieves 82.66% Pollutant Removal, With RNN Model Predicting Performance at an R2 of 0.960

  • High-Adsorption Coconut Biochar for Water Contamination with at Least 70% Pollutant Reduction

    High-Adsorption Coconut Biochar for Water Contamination with at Least 70% Pollutant Reduction

  • A Cost-Effective Seaweed Biochar Removes Vanadium at 48.8 mg/g and Can Be Reused for Three Cycles

    A Cost-Effective Seaweed Biochar Removes Vanadium at 48.8 mg/g and Can Be Reused for Three Cycles

  • Cassava Peel Biochar Achieves 72.16% Dye Removal from Batik Wastewater at Optimal pH

    Cassava Peel Biochar Achieves 72.16% Dye Removal from Batik Wastewater at Optimal pH

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