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heavy metals

  • How Converting 50 Mt of Sewage Sludge to Biochar can Improve Soil and Agricultural Yields

    How Converting 50 Mt of Sewage Sludge to Biochar can Improve Soil and Agricultural Yields

  • Biochar-Chitosan Nanocomposite Achieves 83% Copper Removal from Industrial Wastewater

    Biochar-Chitosan Nanocomposite Achieves 83% Copper Removal from Industrial Wastewater

  • A 66% Reduction in Cadmium: A Solution for Heavy Metal Contamination

    A 66% Reduction in Cadmium: A Solution for Heavy Metal Contamination

  • A New Nanocomposite Achieves 90.30% Lead Removal and a 79.302 mg/g Adsorption Capacity

    A New Nanocomposite Achieves 90.30% Lead Removal and a 79.302 mg/g Adsorption Capacity

  • 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

  • New Biochar Filtration System to Tackle Water Contamination in Port Townsend

    New Biochar Filtration System to Tackle Water Contamination in Port Townsend

  • Trichoderma Harzianum-Loaded Maize Biochar Reduces Cadmium and Copper Bioavailability by Up to 40% in Contaminated Soil

    Trichoderma Harzianum-Loaded Maize Biochar Reduces Cadmium and Copper Bioavailability by Up to 40% in Contaminated Soil

  • Biochar in Stormwater Runoff: High Success in Solids and Oil Removal, but Variable for Heavy Metals

    Biochar in Stormwater Runoff: High Success in Solids and Oil Removal, but Variable for Heavy Metals

  • Iron-Manganese Modified Biochar: A Multifunctional Material for Environmental Cleanup with Enhanced Removal Efficiency

    Iron-Manganese Modified Biochar: A Multifunctional Material for Environmental Cleanup with Enhanced Removal Efficiency

  • Sludge-Derived Biochar Hydrogel Achieves 252 mg/g Phosphate Adsorption and Boosts Lettuce Growth by 110%

    Sludge-Derived Biochar Hydrogel Achieves 252 mg/g Phosphate Adsorption and Boosts Lettuce Growth by 110%

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