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swine manure

  • Modified Biochar Additives Reduce Ammonia Loss by Up to Twenty Eight Percent and Enhance Fertilizer Quality in Swine Manure Composting

    Modified Biochar Additives Reduce Ammonia Loss by Up to Twenty Eight Percent and Enhance Fertilizer Quality in Swine Manure Composting

  • Hazelnut Shell Biochar Yields 31.64 MJ/kg Energy Density, Outperforming Wood Pellets

    Hazelnut Shell Biochar Yields 31.64 MJ/kg Energy Density, Outperforming Wood Pellets

  • Machine Learning Predicts Phosphorus Fate in Biowaste Hydrochar: XGBoost Model Achieves R2=1.0 for Inorganic Liquid Phosphorus

    Machine Learning Predicts Phosphorus Fate in Biowaste Hydrochar: XGBoost Model Achieves R2=1.0 for Inorganic Liquid Phosphorus

  • Inoculum Quality Outweighs Biochar: Enriched Inoculum Boosts Methane Yield by up to 38.7%

    Inoculum Quality Outweighs Biochar: Enriched Inoculum Boosts Methane Yield by up to 38.7%

  • XGBoost Model Achieves 99% Predictive Accuracy for Phosphorus Recovery from Swine Manure

    XGBoost Model Achieves 99% Predictive Accuracy for Phosphorus Recovery from Swine Manure

  • Enhancing Methane Production from Cellulosic Ethanol Waste with Biochar

    Enhancing Methane Production from Cellulosic Ethanol Waste with Biochar

  • Potassium Addition Enhances Phosphorus Availability in Biochar Derived from Swine Manure

    Potassium Addition Enhances Phosphorus Availability in Biochar Derived from Swine Manure

  • Stabilizing Heavy Metals in Manure-Derived Biochar

    Stabilizing Heavy Metals in Manure-Derived Biochar

  • BC-nZVI for Reducing Antibiotic and Metal Resistance During Composting

    BC-nZVI for Reducing Antibiotic and Metal Resistance During Composting

  • Enhancing Agricultural Sustainability with Biochar and Zeolite: A Study on Swine Manure

    Enhancing Agricultural Sustainability with Biochar and Zeolite: A Study on Swine Manure

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