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Cations Diffusion in Nafion117 Membrane of Microbial fuel cells

机译:微生物燃料电池Nafion117膜中的阳离子扩散

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The effects of five kinds of cations (Na+, K+, NH4+, Mg2+, Ca2+) in the anode phase on the diffusion of hydronium ions (H3O+) in the Nafion117 membrane and at the membrane/solution interface of a microbial fuel cell are investigated by means of molecular dynamics simulations and experiments. The cation diffusion laws are elucidated by the self-diffusion coefficients and the membrane conductivities. The results show that the presence of other cations in the membrane can lower the membrane conductivity and the intramembranous diffusion coefficient of H3O+, especially Ca2+. It is found that the NH4+ diffusion is susceptible to the membrane/solution interfacial structure and the presence of other cations in the membrane. The stable metal cations diffusion law (K+ > Na+ > Mg2+ > Ca2+) is applicative to both intramembranous and interfacial structure, as well as the complex solution containing binary and multiple cations. The main factors affecting cations diffusion are hydrated radius, hydrated degree of cations, and the interaction between cations and sulfonic acid groups (-SO3H) of Nafion side chains. In addition, the formation of large size clusters or uniform distribution of cations in the membrane is conducive to their intramembranous diffusion and the connected region is conducive to the diffusion of cations through the membrane/solution interface. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了Nafion117膜中散氢(H3O +)和微生物燃料电池膜/溶液界面的阳极相对阳极相对散约液(H3O +)扩散的阳离子(Na +,K +,NH4 +,Mg2 +,Ca2 +,Ca2 +)的影响分子动力学模拟和实验方法。通过自扩散系数和膜导体阐明阳离子扩散法。结果表明,膜中的其他阳离子的存在可以降低膜导电性和H3O +的氧气发射扩散系数,尤其是Ca2 +。发现NH 4 +扩散易于膜/溶液界面结构以及膜中其他阳离子的存在。稳定的金属阳离子扩散法(k +> Na +> Mg2 +> Ca2 +)是膜质型和界面结构的应用,以及含有二元和多个阳离子的复合溶液。影响阳离子扩散的主要因素是水合半径,水合度,阳离子侧链的阳离子和磺酸基(-SO3H)之间的相互作用。此外,膜中阳离子的大尺寸簇或均匀分布的形成有利于它们的氧气内扩散,并且连接区域有利于阳离子的扩散通过膜/溶液界面。 (c)2017 Elsevier Ltd.保留所有权利。

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