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Heavy metal

  • Integrating Machine Learning Boosts Heavy Metal Removal Prediction by 8% and Achieves Over 80% Probability for Lower Remediation Targets

    Integrating Machine Learning Boosts Heavy Metal Removal Prediction by 8% and Achieves Over 80% Probability for Lower Remediation Targets

  • Biochar Reduces Lead and Chromium by Up to 99%, Enhancing Phytoremediation

    Biochar Reduces Lead and Chromium by Up to 99%, Enhancing Phytoremediation

  • Biochar Optimization for Heavy Metal Adsorption: Balancing Porosity and Functional Groups

    Biochar Optimization for Heavy Metal Adsorption: Balancing Porosity and Functional Groups

  • Pear Biochar at 3% Increases Y. longistaminea Fresh Weight by Up to 127% in Copper-Polluted Soil

    Pear Biochar at 3% Increases Y. longistaminea Fresh Weight by Up to 127% in Copper-Polluted Soil

  • 89% Biomass Increase and Reduced Copper Uptake in Yunnanopilia longistaminea with Pear Tree Biochar Amendment

    89% Biomass Increase and Reduced Copper Uptake in Yunnanopilia longistaminea with Pear Tree Biochar Amendment

  • Biochar-Based Organic Fertilizers: A Safer Way to Recycle Biowaste

    Biochar-Based Organic Fertilizers: A Safer Way to Recycle Biowaste

  • Enhancing Mercury Removal: Core-Shell Structured Ferrous Sulfide-Doped Biochar with Minimal Iron Release

    Enhancing Mercury Removal: Core-Shell Structured Ferrous Sulfide-Doped Biochar with Minimal Iron Release

  • Synthesis and environmental applications of biochar-supported nano-zero-valent iron composites: a review

    Synthesis and environmental applications of biochar-supported nano-zero-valent iron composites: a review

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John Webster – Operations
Timothy Harfield – Founding Editor


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