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Gaseous pollutant treatment and electricity generation in microbial fuel cells (MFCs) utilising redox mediators

机译:利用氧化还原介体的微生物燃料电池(MFCs)中的气态污染物处理和发电

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Microbial fuel cell (MFC) is an emerging technology for sustainable energy generation and waste treatment. This paper reviews the potential of a gaseous substrate when it is combined with a mediator in an MFC to generate electricity and to treat toxic gaseous pollutants. Most MFCs for waste water treatment often cannot use mediator to enhance the electron transfer from the microbe to the anode because of the difficulty in recovering the expensive and potentially toxic compound. Combining gas feeds with mediators is possible since the soluble mediator would remain in the anode chamber as the gas passes through the reactor. In addition, this type of MFC is possible to be integrated into an anaerobic biofiltration system (BF-MFC), where the biofilter removes the gaseous contaminant and produces the reduced mediator and the MFC produces the electricity and recycles the reoxidised mediator. This paper also talks about the past research on gaseous feed MFCs, and reviews the mechanism and strategies of electron transfer in MFC using redox mediator. The advantages, process parameters and challenges of BF-MFC are discussed. This knowledge is very much required in the design and scale up of BF-MFC. This paper will be useful for those who work in the area of gaseous pollutant treatment and electricity generation.
机译:微生物燃料电池(MFC)是用于可持续能源生产和废物处理的新兴技术。本文综述了气态底物与MFC中的介体结合使用时产生电和处理有毒气态污染物的潜力。大多数用于废水处理的MFC通常无法使用介体来增强电子从微生物到阳极的转移,因为难以回收昂贵且有潜在毒性的化合物。将气体进料与介体结合是可能的,因为当气体通过反应器时,可溶介体将保留在阳极室中。此外,这种类型的MFC可能会集成到厌氧生物滤池系统(BF-MFC)中,在该系统中,生物滤池会去除气态污染物并产生还原的介体,而MFC则产生电能并回收再氧化的介体。本文还讨论了气态进料MFC的过去研究,并回顾了使用氧化还原介体在MFC中进行电子转移的机理和策略。讨论了BF-MFC的优点,工艺参数和挑战。在BF-MFC的设计和放大中非常需要此知识。本文对于在气态污染物处理和发电领域工作的人们将是有用的。

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