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Science

  • Combined Biochar and Bio-Organic Fertilizer Application Boosts Quinoa Aerial Biomass by up to 220 Percent in Saline-Alkali Soil

    Combined Biochar and Bio-Organic Fertilizer Application Boosts Quinoa Aerial Biomass by up to 220 Percent in Saline-Alkali Soil

  • Invasive Weed Biochar Boosts Oat Fodder Yield by 8 Percent and Increases Mine Spoil Carbon Stock by 91 Percent

    Invasive Weed Biochar Boosts Oat Fodder Yield by 8 Percent and Increases Mine Spoil Carbon Stock by 91 Percent

  • Biochar Increases Soil Water Retention by 200 Percent and Soil Phosphorus Availability by 241 Percent in Millet Cultivation

    Biochar Increases Soil Water Retention by 200 Percent and Soil Phosphorus Availability by 241 Percent in Millet Cultivation

  • Nitrogen Addition Drives 5-Year Tree Growth in Scots Pine Stands, While Pure Biochar Shows No Stimulatory Effect

    Nitrogen Addition Drives 5-Year Tree Growth in Scots Pine Stands, While Pure Biochar Shows No Stimulatory Effect

  • Almond Shells Yield Up to Forty-One Percent Biochar in Fixed-Bed Pyrolysis

    Almond Shells Yield Up to Forty-One Percent Biochar in Fixed-Bed Pyrolysis

  • Low Biochar Loads Up to 5 Weight Percent Enhance Poly(lactic acid) Biocomposites

    Low Biochar Loads Up to 5 Weight Percent Enhance Poly(lactic acid) Biocomposites

  • Seven-Year Biochar Application Increases Soil Macroaggregates by up to 32 Percent and Total Soil Organic Carbon in Eucalyptus Forests

    Seven-Year Biochar Application Increases Soil Macroaggregates by up to 32 Percent and Total Soil Organic Carbon in Eucalyptus Forests

  • Wood Waste Nanocomposite Achieves 95 Percent Dye Removal Under Visible Light

    Wood Waste Nanocomposite Achieves 95 Percent Dye Removal Under Visible Light

  • Foliar Biochar Suspensions Enhance Crop Yields by up to 37 Percent and Chlorophyll Levels by 72 Percent Under Abiotic Stress

    Foliar Biochar Suspensions Enhance Crop Yields by up to 37 Percent and Chlorophyll Levels by 72 Percent Under Abiotic Stress

  • N-Doped Weigela Japonica-Based Porous Carbon Achieves Specific Surface Area of 2,916 m²/g and 99.9% Retention in Zinc-Ion Hybrid Capacitors

    N-Doped Weigela Japonica-Based Porous Carbon Achieves Specific Surface Area of 2,916 m²/g and 99.9% Retention in Zinc-Ion Hybrid Capacitors

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John Webster – Operations
Timothy Harfield – Founding Editor


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