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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Bio-electro-Fenton systems for sustainable wastewater treatment: mechanisms, novel configurations, recent advances, LCA and challenges. An updated review
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Bio-electro-Fenton systems for sustainable wastewater treatment: mechanisms, novel configurations, recent advances, LCA and challenges. An updated review

机译:可持续废水的生物电气 - 芬顿系统处理:机制,新颖配置,最近进步,LCA和挑战。 更新的评论

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摘要

Bio-electro-Fenton processes use biological electrons produced from bioelectrochemical systems to treat wastewater. The most significant advantages of bio-electro-Fenton systems are high effectiveness, low toxicity, gentle operation conditions, environmentally friendly treatment without sludge accumulation and energy conservation. Though promising, bio-electro-Fenton systems still face several challenges, such as high power density, H2O2 concentration, cathode materials, Fe2+ concentration and pH. This review comprehensively discusses the mechanisms of bio-electro-Fenton systems. Then, structural configurations are critically reviewed, including microbial fuel cells coupled with electro-Fenton systems, microbial electrolysis cells coupled with electro-Fenton systems and other bioelectrochemical systems coupled with electro-Fenton systems. Furthermore, recent advances in bio-electro-Fenton systems for wastewater treatment are introduced, including dye solution, pharmaceuticals and personal care products, oily wastewater, landfill leachate and other pollutants. In addition, the current challenges and specific future prospects of bio-electro-Fenton, such as possible mechanisms for improving the power output, electrode materials that are potentially useful, self-designed electrodes and methods of maintaining circumneutral pH values, are also explored. Heretofore, great progress in bio-electro-Fenton has been made, but further improvements are still needed in order to make this system more economical and practical. (c) 2020 Society of Chemical Industry
机译:生物电气 - 芬顿工艺使用生物电化学系统产生的生物电子来处理废水。生物电气芬顿系统的最大优势是高效率,毒性低,操作条件温和,环境友好的处理,无污泥积累和节能。虽然有前途,但生物电气 - 芬顿系统仍面临几种挑战,如高功率密度,H2O2浓度,阴极材料,Fe2 +浓度和pH值。本综述全面讨论了生物电器 - 芬顿系统的机制。然后,结构配置受到重视,包括与电芬系统耦合的微生物燃料电池,与电芬系统和其他与电芬系统联接的生物电化学系统偶联的微生物电解细胞。此外,介绍了生物电气 - 芬顿系统的最新进展,包括染料溶液,药品和个人护理产品,油性废水,垃圾渗滤液和其他污染物。此外,还探讨了当前的挑战和生物电气 - 芬顿的特定未来前景,例如用于改善功率输出的可能机制,具有潜在有用的自我设计电极的电极材料和维持患者pH值的方法。迄今为止,已经制造了生物电器 - 芬顿的巨大进展,但仍然需要进一步的改进,以使该系统更经济和实用。 (c)2020化学工业学会

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