Applied Catalysis2022,Vol.31514.DOI:10.1016/j.apcatb.2022.121523

High H2O2 selectivity and enhanced Fe2+ regeneration toward an effective electro-Fenton process based on a self-doped porous biochar cathode

Luo, Zhipeng Liu, Mingtao Tang, Diyong Xu, Yao Ran, Honghua He, Jing Chen, Ke Sun, Jie
Applied Catalysis2022,Vol.31514.DOI:10.1016/j.apcatb.2022.121523

High H2O2 selectivity and enhanced Fe2+ regeneration toward an effective electro-Fenton process based on a self-doped porous biochar cathode

Luo, Zhipeng 1Liu, Mingtao 1Tang, Diyong 1Xu, Yao 1Ran, Honghua 1He, Jing 1Chen, Ke 1Sun, Jie1
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作者信息

  • 1. South Cent Minzu Univ
  • 折叠

Abstract

Cathode materials with high catalytic activity for H2O2 production and Fe2+ regeneration are essential to an efficient electro-Fenton process. Herein, we demonstrate a facile self-sacrificial template route to synthesize heteroatom-doped porous biochar. Owing to the created hierarchical porous structure and active defects, more generated oxygen functional groups (COOH/C-O-C) and modulated nitrogen dopants, the biochar cathode exhibits enhanced electrocatalytic activity. It achieves a high H2O2 selectivity (92%), facilitated Fe2+ regeneration, and an efficient H2O2 activation rate (82%). Various organic contaminants, including endocrine-disrupting chemicals, phenols, and antibiotics, can be effectively degraded with removal efficiencies of 98-100% within 15 min. The mineralization efficiencies achieve 83-100% with energy consumption of 0.87-1.07 kWh m- 3. Moreover, the electro-Fenton system exhibits good stability and versatile applicability for organic pollutants remediation in different surface water matrices. This study offers valuable insights into the preparation of costeffective cathode materials for an efficient electro-Fenton process.

Key words

Electro-Fenton process/Hydrogen peroxide/Hydroxyl radical/Biochar/Fe 2+regeneration/OXYGEN REDUCTION/HYDROGEN-PEROXIDE/GRAPHITE FELT/DEGRADATION/OXIDATION/SITES

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出版年

2022
Applied Catalysis

Applied Catalysis

ISSN:0926-3373
被引量52
参考文献量62
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