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adsorbents

  • A $2.4 Billion Economic Benefit from Converting Bio-Tar into Bio-Carbon with a 28.2 MJ/kg Fuel

    A $2.4 Billion Economic Benefit from Converting Bio-Tar into Bio-Carbon with a 28.2 MJ/kg Fuel

  • Bio-carbon Yield from Bio-tar Drops by Over 49% as Polymerization Temperature Increases from 200°C to 500°C

    Bio-carbon Yield from Bio-tar Drops by Over 49% as Polymerization Temperature Increases from 200°C to 500°C

  • Unlocking Clean Water: A Comparative Look at Biochar and Other Wastewater Treatment Materials, and Their Market Impact

    Unlocking Clean Water: A Comparative Look at Biochar and Other Wastewater Treatment Materials, and Their Market Impact

  • Transforming Bio-tar into High-Value Bio-carbon: Enhancing Yields by Over 30% Through Optimized Polymerization

    Transforming Bio-tar into High-Value Bio-carbon: Enhancing Yields by Over 30% Through Optimized Polymerization

  • Olive Stone Hydrochar with ZnCl2 Activation Achieves 1281 m2/g Surface Area, Improving  CO2​ Adsorption to 2.78 mmol/g.

    Olive Stone Hydrochar with ZnCl2 Activation Achieves 1281 m2/g Surface Area, Improving CO2​ Adsorption to 2.78 mmol/g.

  • Biochar and Activated Carbon: Sustainable Solutions for Antibiotic Removal from Pharmaceutical Wastewater

    Biochar and Activated Carbon: Sustainable Solutions for Antibiotic Removal from Pharmaceutical Wastewater

  • Biochar from Coffee Husks: A Novel Approach to Surfactant Adsorption

    Biochar from Coffee Husks: A Novel Approach to Surfactant Adsorption

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