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sustainable chemistry

  • Composite Catalyst Achieves Ninety-Six Percent Aromatic Selectivity in Microalgae Processing

    Composite Catalyst Achieves Ninety-Six Percent Aromatic Selectivity in Microalgae Processing

  • Biochar Composite Achieves 92 Percent Efficiency in Removing Toxic Food Dye from Wastewater

    Biochar Composite Achieves 92 Percent Efficiency in Removing Toxic Food Dye from Wastewater

  • Brazil Processes Over Two Million Tons of Coconut Waste into Sustainable Fuel and Carbon Sequestration Materials

    Brazil Processes Over Two Million Tons of Coconut Waste into Sustainable Fuel and Carbon Sequestration Materials

  • Harnessing Plant Based Biochar to Remove Nearly Ninety Eight Percent of Herbicide Contamination

    Harnessing Plant Based Biochar to Remove Nearly Ninety Eight Percent of Herbicide Contamination

  • Sustainable Wastewater Treatment Using Low Cost Carbon Based Biochar Catalysts

    Sustainable Wastewater Treatment Using Low Cost Carbon Based Biochar Catalysts

  • Exploring the Conversion of Levulinic Acid to gamma-Valerolactone: A 73% Yield Achieved with Biochar-Supported Bimetallic Catalyst

    Exploring the Conversion of Levulinic Acid to gamma-Valerolactone: A 73% Yield Achieved with Biochar-Supported Bimetallic Catalyst

  • Novel Biochar-Based Catalyst Enables Sustainable Chemical Transformations

    Novel Biochar-Based Catalyst Enables Sustainable Chemical Transformations

  • Enhanced Biomass Conversion: Catalytic Oxidation of Xylose to Formic Acid

    Enhanced Biomass Conversion: Catalytic Oxidation of Xylose to Formic Acid

  • Optimizing Biochar Carbon Nanodots for Efficient Solketal Production from Crude Glycerol

    Optimizing Biochar Carbon Nanodots for Efficient Solketal Production from Crude Glycerol

  • Corn Stover-Derived Biochar: A Catalyst for Efficient Sorbitol Production

    Corn Stover-Derived Biochar: A Catalyst for Efficient Sorbitol Production

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John Webster – Operations
Timothy Harfield – Founding Editor


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