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Agriculture

  • Sustainable Soil Integration With Biochar Increases Spearmint Essential Oil Yield by Over Ninety Percent

    Sustainable Soil Integration With Biochar Increases Spearmint Essential Oil Yield by Over Ninety Percent

  • Biochar Amendments Reduce Agricultural Greenhouse Gas Emissions by Up to Fifty-Four Percent

    Biochar Amendments Reduce Agricultural Greenhouse Gas Emissions by Up to Fifty-Four Percent

  • Egyptian Agricultural Waste Biochar Increases Wheat Biomass by Up to 84 Percent and Enhances Soil Potassium Dynamics

    Egyptian Agricultural Waste Biochar Increases Wheat Biomass by Up to 84 Percent and Enhances Soil Potassium Dynamics

  • Biochar Application Boosts Soil Potassium Availability by Up to 849 Percent

    Biochar Application Boosts Soil Potassium Availability by Up to 849 Percent

  • Feeding Biochar to Dairy Cows Results in 70 to 90 Percent Recovery of Stable Carbon for Soil Sequestration

    Feeding Biochar to Dairy Cows Results in 70 to 90 Percent Recovery of Stable Carbon for Soil Sequestration

  • Biochar and Humic Acid Priming Boost Lentil Germination Rates by Up to 14.7 Percent

    Biochar and Humic Acid Priming Boost Lentil Germination Rates by Up to 14.7 Percent

  • Co-application of Mild Drying and Biochar Boosts Rice Yield by up to Eighteen Percent While Improving Grain Quality

    Co-application of Mild Drying and Biochar Boosts Rice Yield by up to Eighteen Percent While Improving Grain Quality

  • Pelletization Conditions Significantly Reduce Microbial Viability in Biochar-Based Biofertilizers

    Pelletization Conditions Significantly Reduce Microbial Viability in Biochar-Based Biofertilizers

  • Modified Biochar Increases Willow Cadmium Accumulation by 94 Percent and Biomass by 35 Percent

    Modified Biochar Increases Willow Cadmium Accumulation by 94 Percent and Biomass by 35 Percent

  • Triple-Metal Mdified Biochar Application Reduces Rice Grain Arsenic Accumulation by Eighty-One Percent

    Triple-Metal Mdified Biochar Application Reduces Rice Grain Arsenic Accumulation by Eighty-One Percent

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John Webster – Operations
Timothy Harfield – Founding Editor


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