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oxidative stress

  • High-Temperature Pyrolysis Enhances Tobacco Stem Biochar to Achieve 100% Inhibition of Soil-Borne Pathogens Through Oxygen Reconfiguration

    High-Temperature Pyrolysis Enhances Tobacco Stem Biochar to Achieve 100% Inhibition of Soil-Borne Pathogens Through Oxygen Reconfiguration

  • Combined Biochar and Sodium Hydrosulfide Treatment Boosts Maize Photosynthesis by Over 50% and Enhances Growth by 20% Under Drought

    Combined Biochar and Sodium Hydrosulfide Treatment Boosts Maize Photosynthesis by Over 50% and Enhances Growth by 20% Under Drought

  • B-Sulfur Biochar Boosts Wheat Growth by 59.39% and Halves Chlorophyll Loss Under Scandium Stress

    B-Sulfur Biochar Boosts Wheat Growth by 59.39% and Halves Chlorophyll Loss Under Scandium Stress

  • Combining Biochar and Wood Vinegar Boosts Alfalfa Cold Tolerance: 19.91% Higher Yield and 235.16% Increased Antioxidant Activity

    Combining Biochar and Wood Vinegar Boosts Alfalfa Cold Tolerance: 19.91% Higher Yield and 235.16% Increased Antioxidant Activity

  • Biochar Application Increases Protective Glutathione Levels 2.9-Fold in Drought-Stressed Brassica napus

    Biochar Application Increases Protective Glutathione Levels 2.9-Fold in Drought-Stressed Brassica napus

  • Dose-Dependent Effects of Dissolved Biochar on C. elegans: Insights into the Physiological and Transcriptomic Responses

    Dose-Dependent Effects of Dissolved Biochar on C. elegans: Insights into the Physiological and Transcriptomic Responses

  • How Biochar Improves Soybean Growth by 53% Under Salt Stress

    How Biochar Improves Soybean Growth by 53% Under Salt Stress

  • Vermicompost Outperforms Biochar, Increasing Tomato Growth by 2.3-fold and Membrane Stability by 1.7-fold Under Chromium Stress

    Vermicompost Outperforms Biochar, Increasing Tomato Growth by 2.3-fold and Membrane Stability by 1.7-fold Under Chromium Stress

  • Biochar  and Selenium Nanoparticles  Jointly Increase Barley Grain Yield by 80.20% and Reduce Shoot Lead by 73.88% in Saline-Polluted Soils

    Biochar and Selenium Nanoparticles Jointly Increase Barley Grain Yield by 80.20% and Reduce Shoot Lead by 73.88% in Saline-Polluted Soils

  • Nano-enabled Biochar Reduces Arsenic Bioavailability by 45% in Rice and 65% in Spinach

    Nano-enabled Biochar Reduces Arsenic Bioavailability by 45% in Rice and 65% in Spinach

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John Webster – Operations
Timothy Harfield – Founding Editor


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