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rice

  • Micro-Nanoscale Bone Char Increases Rice Yield by 49.72 Percent While Reducing Lead Accumulation in Grains

    Micro-Nanoscale Bone Char Increases Rice Yield by 49.72 Percent While Reducing Lead Accumulation in Grains

  • BRRI Dhan89 Combined with Mehogoni Biochar Maximizes Rice Grain Yield at 9.40 t ha−1

    BRRI Dhan89 Combined with Mehogoni Biochar Maximizes Rice Grain Yield at 9.40 t ha−1

  • Biochar, Manure, and Inorganic Fertilizers: A Synergistic Approach Boosts Rice Yield by 104%

    Biochar, Manure, and Inorganic Fertilizers: A Synergistic Approach Boosts Rice Yield by 104%

  • Biochar from an Invasive Plant Boosts Rice Biomass by 84% Under Combined Nanoplastic and Cadmium Stress

    Biochar from an Invasive Plant Boosts Rice Biomass by 84% Under Combined Nanoplastic and Cadmium Stress

  • Rice Plants Protected From Arsenic Toxicity With Biochar and Melatonin Partnership: A 31.43% Increase in Grain Yield Observed

    Rice Plants Protected From Arsenic Toxicity With Biochar and Melatonin Partnership: A 31.43% Increase in Grain Yield Observed

  • Biochar and Melatonin Combination Boosts Rice Yield by 31% and Reduces Arsenic Accumulation by 74%

    Biochar and Melatonin Combination Boosts Rice Yield by 31% and Reduces Arsenic Accumulation by 74%

  • Iron-Modified Biochar Reduces Antimony Accumulation in Rice by 28% While Boosting Root Growth by 85%

    Iron-Modified Biochar Reduces Antimony Accumulation in Rice by 28% While Boosting Root Growth by 85%

  • Enhancing Soil Health: Biochar’s Multi-faceted Detoxification Reduces Copper Uptake by 45.5% and Mercury by 73%

    Enhancing Soil Health: Biochar’s Multi-faceted Detoxification Reduces Copper Uptake by 45.5% and Mercury by 73%

  • Lowering Agricultural GHG Emissions: Moderate Biochar Pyrolysis at 400-550°C Decreases Carbon Intensity by 14.9%

    Lowering Agricultural GHG Emissions: Moderate Biochar Pyrolysis at 400-550°C Decreases Carbon Intensity by 14.9%

  • Mitigating Cadmium in Rice: A 95% Reduction in Grain Cadmium Achieved Through Biochar, Selenium, and Water Management

    Mitigating Cadmium in Rice: A 95% Reduction in Grain Cadmium Achieved Through Biochar, Selenium, and Water Management

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