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Biofouling effects on the performance of microbial fuel cells and recent advances in biotechnological and chemical strategies for mitigation

机译:生物耦合对微生物燃料电池性能的影响以及减轻生物技术和化学策略的最新进展

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The occurrence of biofouling in MFC can cause severe problems such as hindering proton transfer and increasing the ohmic and charge transfer resistance of cathodes, which results in a rapid decline in performance of MFC. This is one of the main reasons why scaling-up of MFCs has not yet been successfully accomplished. The present review article is a wide-ranging attempt to provide insights to the biofouling mechanisms on surfaces of MFC, mainly on proton exchange membranes and cathodes, and their effects on performance of MFC based on theoretical and practical evidence. Various biofouling mitigation techniques for membranes are discussed, including preparation of antifouling composite membranes, modification of the physical and chemical properties of existing membranes, and coating with antifouling agents. For cathodes of MFC, use of Ag nanoparticles, Ag-based composite nanoparticles, and antifouling chemicals is outlined in considerable detail. Finally, prospective techniques for mitigation of biofouling are discussed, which have not been given much previous attention in the field of MFC research. This article will help to enhance understanding of the severity of biofouling issues in MFCs and provides up-to-date solutions. It will be beneficial for scientific communities for further strengthening MFC research and will also help in progressing this cutting-edge technology to scale-up, using the most efficient methods as described here.
机译:MFC中生物污染的发生可能导致严重的问题,例如妨碍质子转移,并增加阴极的欧姆和电荷转移电阻,这导致MFC性能的快速下降。这是MFCS扩展尚未成功完成的主要原因之一。本综述文章是一个广泛的尝试,为MFC表面的生物耦合机制提供了深度,主要是在质子交换膜和阴极上,以及基于理论和实际证据的MFC对MFC性能的影响。讨论了用于膜的各种生物污染减缓技术,包括制备防污复合膜,修饰现有膜的物理和化学性质,以及用防污剂涂覆。对于MFC的阴极,在相当大的细节下概述了Ag纳米颗粒,Ag纳米颗粒,Ag基复合纳米粒子和防污化学品。最后,讨论了消除生物污染的前瞻性技术,这在MFC研究领域之前尚未给出了很多关注。本文将有助于加强对MFCS中生物污染问题的严重性的理解,并提供最新的解决方案。科学社区对进一步加强MFC研究将有益,并且还将有助于使用如此介绍的最有效方法来扩大这种前沿技术。

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