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Effects of membrane cation transport on pH and microbial fuel cell performance

机译:膜阳离子迁移对pH和微生物燃料电池性能的影响

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Due to the excellent proton conductivity of Nafion membranes in polymer electrolyte membrane fuel cells (PEMFCs), Nafion has been applied also in microbial fuel cells (MFCs). In literature, however, application of Nafion in MFCs has been associated with operational problems. Nafion transports cation species other than protons as well, and in MFCs concentrations of other cation species (Na+, K+, NH4+, Ca2+, and Mg2+) are typically 105 times higher than the proton concentration. The objective of this study, therefore, was to quantify membrane cation transport in an operating MFC and to evaluate the consequences of this transport for MFC application on wastewaters. We observed that during operation of an MFC mainly cation species other than protons were responsible for the transport of positive charge through the membrane, which resulted in accumulation of these cations and in increased conductivity in the cathode chamber. Furthermore, protons are consumed in the cathode reaction and, consequently, transport of cation species other than protons resulted in an increased pH in the cathode chamber and a decreased MFC performance. Membrane cation transport, therefore, needs to be considered in the development of future MFC systems.
机译:由于Nafion膜在聚合物电解质膜燃料电池(PEMFC)中具有出色的质子传导性,因此Nafion也已应用于微生物燃料电池(MFCs)中。但是,在文献中,Nafion在MFC中的应用与操作问题有关。 Nafion也会传输质子以外的阳离子,并且在MFC中,其他阳离子(Na +,K +,NH4 +,Ca2 +和Mg2 +)的浓度通常比质子浓度高105倍。因此,本研究的目的是量化运行中的MFC中的膜阳离子迁移,并评估这种迁移对MFC在废水中应用的后果。我们观察到,在MFC的运行过程中,除质子外,主要的阳离子物种还负责通过膜传输正电荷,这导致这些阳离子的积累并增加了阴极室的电导率。此外,质子在阴极反应中被消耗,因此,质子以外的阳离子种类的运输导致阴极室中pH的增加和MFC性能的降低。因此,在未来的MFC系统的开发中需要考虑膜阳离子的运输。

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