Novel Membrane Electrode Assembly (MEA) Fabrication for PEMFC Operations under Non-humidified Conditions

Sy. Lee, H. Kim, K. Kim, E. Cho, I. Oh, T. Lim
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引用次数: 1

Abstract

The operation under non-humidified condition was demonstrated with novel MEA (membrane electrode assembly) for a PEMFC (proton exchange membrane fuel cell). For a conventional PEMFC operation, Pt is loaded uniformly on the whole active area of MEA. In the report, Pt catalyst was coated with a gradient on the active area of MEA. The catalyst amount was reduced gradually from cathode inlet to outlet. When the cell was fully humidified, the performance of gradient catalyst coated MEA was lower than that of the uniform catalyst coated one. However, when the cell was operated under non-humidified condition, the cell performance of the gradient catalyst coated MEA was higher than that of the uniform catalyst coated MEA. In the case of the gradient catalyst coated electrode, the amount of water which was generated at the cathode inlet site was relatively large compared to uniform catalyst coated one and the water was used to hydrate the MEA properly, resulting in higher cell performance under non-humidified condition.
非湿条件下PEMFC操作的新型膜电极组件(MEA)制造
采用新型膜电极组件对质子交换膜燃料电池(PEMFC)在无湿条件下的运行进行了演示。对于传统的PEMFC操作,Pt均匀地加载在MEA的整个有源区域上。在该报告中,铂催化剂在MEA的活性区域上涂有梯度。催化剂用量从阴极入口到出口逐渐减少。当电池完全加湿时,梯度催化剂包覆的MEA性能低于均匀催化剂包覆的MEA。然而,当电池在非湿化条件下运行时,梯度催化剂包覆MEA的电池性能高于均匀催化剂包覆MEA的电池性能。在梯度催化剂包覆电极的情况下,与均匀催化剂包覆电极相比,在阴极入口处产生的水量相对较大,并且水被适当地用于水化MEA,从而在非加湿条件下提高了电池性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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