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nitrous oxide

  • High-Dose Wood Biochar Reduces Farmland Nitrous Oxide Warming Sensitivity to 1.13 While Raising Forest Soil Values to 2.84

    High-Dose Wood Biochar Reduces Farmland Nitrous Oxide Warming Sensitivity to 1.13 While Raising Forest Soil Values to 2.84

  • Co-Applying Biochar and Dual Nitrogen Inhibitors to Subtropical Tea Soils Cuts Greenhouse Gas Emission Factors by Fifty Percent and Boosts Harvest Yields by Over Six Percent

    Co-Applying Biochar and Dual Nitrogen Inhibitors to Subtropical Tea Soils Cuts Greenhouse Gas Emission Factors by Fifty Percent and Boosts Harvest Yields by Over Six Percent

  • Biochar Application Lowers Soil Nitrous Oxide Gas Emissions by 10.5 to 54.8 Percent

    Biochar Application Lowers Soil Nitrous Oxide Gas Emissions by 10.5 to 54.8 Percent

  • Soil Management Trade-offs: Biochar Increases Sorghum Yield up to 35 Percent and Retains Soil Carbon while Nitrous Oxide Remains the Dominant Greenhouse Gas Emitter

    Soil Management Trade-offs: Biochar Increases Sorghum Yield up to 35 Percent and Retains Soil Carbon while Nitrous Oxide Remains the Dominant Greenhouse Gas Emitter

  • Pyrolysis Temperature Dictates a Twenty-Eight Percent Increase or Fifty-Three Percent Reduction in Total Soil Denitrification

    Pyrolysis Temperature Dictates a Twenty-Eight Percent Increase or Fifty-Three Percent Reduction in Total Soil Denitrification

  • Optimal Biochar Application Strategies Could Avoid up to Fifty Percent of Annual Nitrous Oxide Emissions from Chinese Croplands

    Optimal Biochar Application Strategies Could Avoid up to Fifty Percent of Annual Nitrous Oxide Emissions from Chinese Croplands

  • Biochar Application Increases Plant Biomass and Reduces Soil Nitrous Oxide Emissions by Sixteen Percent

    Biochar Application Increases Plant Biomass and Reduces Soil Nitrous Oxide Emissions by Sixteen Percent

  • Biochar Application Increases Plant Biomass and Reduces Soil Nitrous Oxide Emissions by Sixteen Percent

    Biochar Application Increases Plant Biomass and Reduces Soil Nitrous Oxide Emissions by Sixteen Percent

  • Biochar and Microbial Remediation Reduce Nitrous Oxide Emissions by Over 67 Percent

    Biochar and Microbial Remediation Reduce Nitrous Oxide Emissions by Over 67 Percent

  • Biochar Application Reduces Nitrous Oxide Emissions in Upland Soils but Increases Them Fourteen Fold in Paddy Fields

    Biochar Application Reduces Nitrous Oxide Emissions in Upland Soils but Increases Them Fourteen Fold in Paddy Fields

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John Webster – Operations
Timothy Harfield – Founding Editor


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