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climate change

  • Re-introducing Carbon to Land Can Mitigate Global Climate Change and Restore Degraded Soil

    Re-introducing Carbon to Land Can Mitigate Global Climate Change and Restore Degraded Soil

  • 100-Fold Increase in Annual Carbon Capture Required to Limit Global Warming to 1.5 Degrees Celsius

    100-Fold Increase in Annual Carbon Capture Required to Limit Global Warming to 1.5 Degrees Celsius

  • Enhancing Carbon Capture Efficiency Through Nitrogen and Phosphorus Doping of Biochar for Sustainable Climate Mitigation

    Enhancing Carbon Capture Efficiency Through Nitrogen and Phosphorus Doping of Biochar for Sustainable Climate Mitigation

  • Biochar Application Increases Soil Water Retention by Up to Thirty Percent to Combat Climate Stress in Agriculture

    Biochar Application Increases Soil Water Retention by Up to Thirty Percent to Combat Climate Stress in Agriculture

  • Biochar Application Increases Soil Water Retention by Up to Thirty Percent to Combat Climate Stress in Agriculture

    Biochar Application Increases Soil Water Retention by Up to Thirty Percent to Combat Climate Stress in Agriculture

  • Taming the Toxic Tide: Thiol-Modified Biochar Reduces Soil Mercury Mobility by Over 80 Percent

    Taming the Toxic Tide: Thiol-Modified Biochar Reduces Soil Mercury Mobility by Over 80 Percent

  • Biochar Systems Can Restore Dryland Soils by Increasing Water Retention Forty Percent and Boosting Grass Biomass by Fifty Percent

    Biochar Systems Can Restore Dryland Soils by Increasing Water Retention Forty Percent and Boosting Grass Biomass by Fifty Percent

  • Continuous Biochar Amendment Under Water-Saving Irrigation Reduces Methane Emissions by Nearly Thirty Percent Over Five Years

    Continuous Biochar Amendment Under Water-Saving Irrigation Reduces Methane Emissions by Nearly Thirty Percent Over Five Years

  • Biochar Reduces Soil Nitrous Oxide Emissions by Up to 84 Percent in Short Term but Increases Them Fourfold After Nine Years

    Biochar Reduces Soil Nitrous Oxide Emissions by Up to 84 Percent in Short Term but Increases Them Fourfold After Nine Years

  • Carba and University of Minnesota Pioneer Low-Cost Carbon Removal via Biochar

    Carba and University of Minnesota Pioneer Low-Cost Carbon Removal via Biochar

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John Webster – Operations
Timothy Harfield – Founding Editor


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