Thin film microfluidic reactors in electrochemical advanced oxidation processes for wastewater treatment: A review on influencing parameters, scaling issues, and engineering considerations

IF 2.9 Q2 ELECTROCHEMISTRY Electrochemical science advances Pub Date : 2022-03-06 DOI:10.1002/elsa.202100210
Faidzul Hakim Adnan, Marie-Noëlle Pons, Emmanuel Mousset
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引用次数: 5

Abstract

The use of microfluidic electrochemical reactors has been introduced several decades ago, but their application in the field of wastewater treatment is more recent (2010). The parallel development of electrochemical advanced oxidation processes (EAOPs) as promising technologies for effluent treatment make them good candidates to be implemented as thin film cells. This allows favoring the mass transfer, which is particularly interesting for heterogenous electro-oxidation. Moreover, the energy requirement is reduced, while there is possibility to treat low-conductivity solutions. This review intends to provide instructions on the main operating parameters to be optimized during the EAOPs treatment. Directions on engineering aspects have been given to overcome the main drawbacks of microreactors, such as fouling, scaling, and low treatment capacity, based on recent encouraging results given in literature. The promising development of hybrid processes that combine electroseparation with electroconversion would also benefit from such reactor designs.

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薄膜微流控反应器在电化学深度氧化废水处理中的应用:影响参数、结垢问题和工程考虑的综述
微流控电化学反应器的使用早在几十年前就被引入,但其在废水处理领域的应用是最近的(2010年)。电化学高级氧化工艺(EAOPs)作为污水处理技术的并行发展使其成为薄膜电池的良好候选者。这有利于质传递,这对于多相电氧化尤其有趣。此外,能量需求降低,同时有可能处理低导电性溶液。本综述旨在为EAOPs治疗过程中需要优化的主要操作参数提供指导。基于最近文献中令人鼓舞的结果,已经给出了工程方面的方向,以克服微反应器的主要缺点,如污垢,结垢和低处理能力。结合电分离和电转化的混合工艺也将受益于这样的反应器设计。
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3.80
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审稿时长
10 weeks
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