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微生物燃料电池阳极的最新进展:综述

Recent Advances in Anodes for Microbial Fuel Cells: An Overview.

作者信息

Yaqoob Asim Ali, Ibrahim Mohamad Nasir Mohamad, Rafatullah Mohd, Chua Yong Shen, Ahmad Akil, Umar Khalid

机构信息

School of Chemical Sciences, Universiti Sains Malaysia, Penang 11800, Malaysia.

School of Industrial Technology, Universiti Sains Malaysia, Penang 11800, Malaysia.

出版信息

Materials (Basel). 2020 May 1;13(9):2078. doi: 10.3390/ma13092078.

Abstract

The recycling and treatment of wastewater using microbial fuel cells (MFCs) has been attracting significant attention as a way to control energy crises and water pollution simultaneously. Despite all efforts, MFCs are unable to produce high energy or efficiently treat pollutants due to several issues, one being the anode's material. The anode is one of the most important parts of an MFC. Recently, different types of anode materials have been developed to improve the removal rate of pollutants and the efficiency of energy production. In MFCs, carbon-based materials have been employed as the most commonly preferred anode material. An extensive range of potentials are presently available for use in the fabrication of anode materials and can considerably minimize the current challenges, such as the need for high quality materials and their costs. The fabrication of an anode using biomass waste is an ideal approach to address the present issues and increase the working efficiency of MFCs. Furthermore, the current challenges and future perspectives of anode materials are briefly discussed.

摘要

使用微生物燃料电池(MFC)对废水进行回收和处理,作为一种同时控制能源危机和水污染的方法,一直备受关注。尽管付出了种种努力,但由于一些问题,MFC仍无法产生高能量或有效处理污染物,其中一个问题就是阳极材料。阳极是MFC最重要的部件之一。最近,已开发出不同类型的阳极材料,以提高污染物的去除率和能源生产效率。在MFC中,碳基材料一直是最常用的首选阳极材料。目前有广泛的电位可用于制造阳极材料,并且可以极大地减少当前的挑战,例如对高质量材料的需求及其成本。利用生物质废物制造阳极是解决当前问题并提高MFC工作效率的理想方法。此外,还简要讨论了阳极材料当前面临的挑战和未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e619/7254385/96fce06acc9e/materials-13-02078-g001.jpg

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