Skip to content
  • LinkedIn
  • X
  • Facebook
  • Instagram
  • Reddit
  • Spotify
  • RSS Feed
  • News
  • Blog
    • Ask Annie
    • Spill the Char
    • Expert Profiles
  • Videos
  • Use Cases
    • Agriculture
    • Horticulture
    • Livestock
    • Landscaping
    • Building Materials
    • Concrete / Asphalt
    • Reforestation
    • Soil Remediation
    • Water Treatment
    • Carbon Sequestration
  • The Biochar Show
  • Store
  • About
    • Partner Directory
    • Editorial Guidelines
    • Contact

climate change mitigation

  • 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

  • Amina Mohammed Centre for Climate Change and Nasarawa State University Partner to Host International Biochar Conference

    Amina Mohammed Centre for Climate Change and Nasarawa State University Partner to Host International Biochar Conference

  • Biochar Application Within Optimal Thresholds Can Increase Soil Water-Holding Capacity by 14.3% and Reduce Greenhouse Gas Emissions by 31.5%

    Biochar Application Within Optimal Thresholds Can Increase Soil Water-Holding Capacity by 14.3% and Reduce Greenhouse Gas Emissions by 31.5%

  • Biochar Increases Soil Organic Carbon by Over Fifty Percent Through Targeted Microbial Community Restructuring

    Biochar Increases Soil Organic Carbon by Over Fifty Percent Through Targeted Microbial Community Restructuring

  • Integrating Biochar into Concrete Increases Strength and Sequesters Carbon

    Integrating Biochar into Concrete Increases Strength and Sequesters Carbon

  • Regulating Mineral Nitrogen Below 291 Kilograms per Hectare Maximizes the Methane Mitigation Potential of Biochar in Rice Paddies

    Regulating Mineral Nitrogen Below 291 Kilograms per Hectare Maximizes the Methane Mitigation Potential of Biochar in Rice Paddies

  • High-Dosage Biochar Application Reduces Soil Heavy Metal Bioavailability by up to 91 Percent Over Fourteen Years

    High-Dosage Biochar Application Reduces Soil Heavy Metal Bioavailability by up to 91 Percent Over Fourteen Years

  • Sustainable Regenerative Farming Practices Combined With Precision Biochar Application Increase Soil Carbon Stocks By Over Two Tons Per Hectare

    Sustainable Regenerative Farming Practices Combined With Precision Biochar Application Increase Soil Carbon Stocks By Over Two Tons Per Hectare

  • Biochar Amendments Can Reduce Agricultural Greenhouse Gas Emissions by Up to Thirty Nine Percent

    Biochar Amendments Can Reduce Agricultural Greenhouse Gas Emissions by Up to Thirty Nine Percent

  • Calcium Coating Boosts Carbon Retention in Litchi Biochar by 34 Percent

    Calcium Coating Boosts Carbon Retention in Litchi Biochar by 34 Percent

1 2 3 … 15
Next Page
  • LinkedIn
  • X
  • Facebook
  • Instagram
  • Reddit
  • Spotify
  • RSS Feed

GET THE NEWSLETTER

  • Resources
  • Glossary
  • Partner Directory
  • About
  • Editorial Guidelines
  • Contact
  • Privacy Policy
  • Disclaimer


Loading Comments...