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extracellular polymeric substances

  • Fe/Mn-Modified Biochar Increases Biohydrogen Production by 47.3% During Co-Fermentation

    Fe/Mn-Modified Biochar Increases Biohydrogen Production by 47.3% During Co-Fermentation

  • Cotton Straw Biochar Pyrolyzed at 700°C Enhances PSB Adhesion and Biofilm Formation by Increasing EPS Production

    Cotton Straw Biochar Pyrolyzed at 700°C Enhances PSB Adhesion and Biofilm Formation by Increasing EPS Production

  • How Microbial-extracellular polymeric substances (EPS)-Biochar Interactions Improve Environmental Cleanup

    How Microbial-extracellular polymeric substances (EPS)-Biochar Interactions Improve Environmental Cleanup

  • Enhancing SCFA Production from Waste Activated Sludge with Biochar Pretreatment

    Enhancing SCFA Production from Waste Activated Sludge with Biochar Pretreatment

  • Enhancing Anammox Efficiency with KOH-Modified Biochar in Chloroquine-Contaminated Wastewater

    Enhancing Anammox Efficiency with KOH-Modified Biochar in Chloroquine-Contaminated Wastewater

  • Enhancing Sludge Dewaterability and Antibiotic Removal with Biochar-Driven Chemical Conditioning

    Enhancing Sludge Dewaterability and Antibiotic Removal with Biochar-Driven Chemical Conditioning

  • Enhancing Anaerobic Digestion for Brewery Wastewater Using Nano Zero-Valent Iron-Loaded Biochar

    Enhancing Anaerobic Digestion for Brewery Wastewater Using Nano Zero-Valent Iron-Loaded Biochar

  • Synergistic Mechanisms of Biochar and Microbial Electrolysis Cells Enhance Anaerobic Digestion of Waste Activated Sludge

    Synergistic Mechanisms of Biochar and Microbial Electrolysis Cells Enhance Anaerobic Digestion of Waste Activated Sludge

  • Boosting Low-Temperature Wastewater Treatment: The Power of Nano Iron Biochar

    Boosting Low-Temperature Wastewater Treatment: The Power of Nano Iron Biochar

  • Enhancing Sludge Management with Biochar: Innovations in Anaerobic Digestion

    Enhancing Sludge Management with Biochar: Innovations in Anaerobic Digestion

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