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New approach for the evaluation of membranes transport properties for polymer electrolyte membrane fuel cells

机译:评价聚合物电解质膜燃料电池膜传输性能的新方法

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摘要

The two major hurdles obstructing the large scale commercialization of PEMFCs (polymer electrolyte membrane fuel cells) are the cost and durability under a wide range of operating conditions. Among the main factors affecting the PEMFC, the durability of the polymeric membrane is one of the most determinant. Ideally, the membrane present in the MEA should be impermeable to gases such as H_2,O_2, N_2, letting past only the H~+ from the anode to the cathode side. However, gases permeate the membrane giving the so-called "crossover". The crossover cannot be considered negligible specifically when the membrane thickness is lower and lower. Nevertheless, the rates of hydrogen and air/oxygen permeation to the opposite side of the membrane are relatively slow, the crossover leads to a depletion of PEMFC efficiency and accelerates the degradation of the polymeric membrane. The evaluation of the permeation of gases through the membranes usually used in the PEMFC becomes, thus, fundamental in the estimation of the overall PEMFC performance. In this work, a new approach for the systematic evaluation of the mass transport properties of a PEM is proposed. A protocol for permeation measurements has been elaborated to compare the transport proper-ties of different membranes as a function of the same operating conditions due to the strict dependence of the membrane performance on the relative humidity (RH) and temperature. The method has been proven on two different membranes: a Nafion 117 and a cross linked home-made SPEEK membrane. The proton conductivity represents the other transport property of the membrane to be considered together with the gas permeation properties. The ideal/desired membrane must exhibit low gas perme-ability and high proton conductivity. Moving in this logic, in the present work a new parameter called Transport Performance Index has been defined as the ratio of hydrogen permeability and proton con-ductivity. This leads to an immediate idea of the whole mass transport performance of the membrane. The mass transport properties, proton conductivity and Transport Performance Index were measured for Nafion 117 and SPEEK membranes as a function of temperature, pressure, and relative humidity feeding different gaseous streams. The properties of the different membranes were also critically compared.
机译:阻碍PEMFC(聚合物电解质膜燃料电池)大规模商业化的两个主要障碍是在广泛的工作条件下的成本和耐用性。在影响PEMFC的主要因素中,聚合物膜的耐久性是最决定因素之一。理想地,MEA中存在的膜应该是诸如H_2,O_2,N_2之类的气体不可渗透的,仅从阳极到阴极侧通过H +。但是,气体渗透到膜上,形成所谓的“交叉”。特别是当膜厚度越来越小时,不能认为交叉可以忽略不计。然而,氢和空气/氧气渗透到膜的相对侧的速度相对较慢,交叉导致PEMFC效率的降低并加速了聚合物膜的降解。因此,对通常通过PEMFC使用的膜的气体渗透性的评估成为评估PEMFC总体性能的基础。在这项工作中,提出了一种新方法,用于系统评估PEM的传质特性。由于膜性能对相对湿度(RH)和温度的严格依赖性,已经制定了渗透测量规程,以比较不同膜的运输特性与相同操作条件的关系。该方法已在两种不同的膜上得到验证:Nafion 117和交联的自制SPEEK膜。质子传导率代表了要考虑的膜的其他传输性质以及气体渗透性质。理想/期望的膜必须表现出低的气体渗透性和高的质子传导性。按照这种逻辑,在本工作中,一个称为“运输性能指数”的新参数已定义为氢渗透率与质子电导率之比。这导致对膜的整体传质性能的直接认识。测量了Nafion 117和SPEEK膜的传质,质子传导性和传输性能指数,作为温度,压力和供给不同气流的相对湿度的函数。还严格地比较了不同膜的性质。

著录项

  • 来源
    《Journal of power sources》 |2012年第1期|p.222-230|共9页
  • 作者单位

    National Research Council - Institute on Membrane Technology (ITM-CNR), Via Pietro BUCCI, c/o The University of Calabria. Cubo 17C, 87036 Rende. CS. Italy;

    National Research Council - Institute on Membrane Technology (ITM-CNR), Via Pietro BUCCI, c/o The University of Calabria. Cubo 17C, 87036 Rende. CS. Italy;

    National Research Council - Institute on Membrane Technology (ITM-CNR), Via Pietro BUCCI, c/o The University of Calabria. Cubo 17C, 87036 Rende. CS. Italy;

    The University of Perugia - Department of Chemistry, Via Eke di Sotto, 10, 06100 Perugia, PC, Italy;

    The University of Rome "Tor Vergata" - Department of Chemical Science and Technology, Via delta Ricerca Scientifica 1,00133 Roma. Italy;

    The University of Rome "Tor Vergata" - Department of Chemical Science and Technology, Via delta Ricerca Scientifica 1,00133 Roma. Italy;

    National Research Council - Institute on Membrane Technology (ITM-CNR), Via Pietro BUCCI, c/o The University of Calabria. Cubo 17C, 87036 Rende. CS. Italy The University of Calabria - Department of Chemical Engineering and Materials, Cubo 44A, Via Pietro BUCCI, 87036 Rende, CS, Italy;

    National Research Council - Institute on Membrane Technology (ITM-CNR), Via Pietro BUCCI, c/o The University of Calabria. Cubo 17C, 87036 Rende. CS. Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    2PEMFC; membrane; mass transport properties; transport performance index;

    机译:2PEMFC;膜;大众运输性质;运输绩效指数;
  • 入库时间 2022-08-18 00:23:44

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