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Scientific Reports

  • Combining Biochar and Nitrogen Fertilizer Boosts Soil Carbon Storage and Increases CO2 Emissions by up to 232 Percent

    Combining Biochar and Nitrogen Fertilizer Boosts Soil Carbon Storage and Increases CO2 Emissions by up to 232 Percent

  • How Tea Waste Biochar and Zeolite Boost Maize Growth by Forty-Five Percent Under Herbicide Stress

    How Tea Waste Biochar and Zeolite Boost Maize Growth by Forty-Five Percent Under Herbicide Stress

  • Innovative Fe-Mn Modified Bamboo Biochar Boosts Arsenic Removal to 5.86 Milligrams per Gram

    Innovative Fe-Mn Modified Bamboo Biochar Boosts Arsenic Removal to 5.86 Milligrams per Gram

  • Pyrolysis of Urban Pruning Waste Sequesters 1.62 Tons of Carbon Dioxide per Ton of Biochar

    Pyrolysis of Urban Pruning Waste Sequesters 1.62 Tons of Carbon Dioxide per Ton of Biochar

  • Synergistic Biochar and Bacteria Combination Replaces Chemical Fertilizers and Boosts Plant Morphological Traits by One Hundred Fifty Percent

    Synergistic Biochar and Bacteria Combination Replaces Chemical Fertilizers and Boosts Plant Morphological Traits by One Hundred Fifty Percent

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

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

  • Integrated Soil Fertility Management Increases Maize Yield by over 100% in Northern Ghana

    Integrated Soil Fertility Management Increases Maize Yield by over 100% in Northern Ghana

  • Steam-Activated Hydrochar from Wine Waste Achieves 99.2% Diclofenac Removal with 25.19 mg/g Capacity

    Steam-Activated Hydrochar from Wine Waste Achieves 99.2% Diclofenac Removal with 25.19 mg/g Capacity

  • Waste Not, Want Not: Peach Pits Yield High-Quality Biochar (39% Recovery) and Bioactive Compounds

    Waste Not, Want Not: Peach Pits Yield High-Quality Biochar (39% Recovery) and Bioactive Compounds

  • Biochar-based Adsorbent Achieves 93% Phosphate Removal with 60% Recovery

    Biochar-based Adsorbent Achieves 93% Phosphate Removal with 60% Recovery

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John Webster – Operations
Timothy Harfield – Founding Editor


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