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Preparation methods of membrane electrode assemblies for proton exchange membrane fuel cells and unitized regenerative fuel cells: A review

机译:质子交换膜燃料电池膜电极组件的制备方法和单位化再生燃料电池:综述

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Hydrogen technologies will become more prominent in the next coming years, in particular systems operating at close to ambient temperature, in the context of sustainability and renewable energies. Membrane electrode assembly (MEA) has been the most primary part of the conventional polymer electrolyte fuel cells as well as unitized regenerative fuel cells. This paper summarizes the important steps and latest developments in the preparation of the assembly such as membrane treatment, preparation of electrodes followed by hot pressing for low temperature (100 degrees C) polymer electrolyte fuel cells and unitized regenerative fuel cells. Various possibilities in the membrane selection for the assemblies are detailed out and their performances are compared with respect to the preparation methods. Catalysts play a very important role in supporting oxygen reduction as well as evolution reaction and primarily differentiate the MEAs of the cells. Hence, they are tabulated along with the possible supports. Also, importance of wet proofing the gas diffusion backing along with preparation of microporous layer with different materials and processes is also reviewed. Hot pressing which is conventionally used for preparing the assemblies makes a great difference when used with optimized operating parameters such as pressure, temperature and time during the pressing. A comparison between the various techniques used for MEA fabrication is summarized and is believed to be useful for researchers. In addition to an extended review on the preparative techniques for MEA manufacturing, the authors underline the performance of a unitized regenerative fuel cell (area = 22.5 cm(2)) by incorporating the salient steps involved during the preparation of membrane electrode assemblies.
机译:在可持续性和可再生能源的背景下,氢技术在未来几年内将变得更加突出,特别是在接近环境温度下运行的系统。膜电极组件(MEA)是常规聚合物电解质燃料电池的最基部分以及单元化再生燃料电池。本文总结了在制备组件的重要步骤和最新发展,例如膜处理,电极的制备,然后是低温(<100℃)聚合物电解质燃料电池和单位化的再生燃料电池的热压。详细地详述了组件的膜选择中的各种可能性,并将其性能相对于制备方法进行比较。催化剂在支持氧还原以及进化反应中起着非常重要的作用,并且主要分化细胞的测量。因此,它们以及可能的支撑件。而且,还综述了湿式剥离气体扩散背衬以及用不同材料和方法的微孔层的重要性。通常用于制备组件的热压当使用的优化操作参数如压力期间的压力,温度和时间使用时具有很大的差异。总结了用于MEA制造的各种技术之间的比较,并且被认为是对研究人员有用的。除了对MEA制造的制备技术的延长审查外,作者还通过在制备膜电极组件的制备过程中掺入涉及的突出步骤来强调单元化再生燃料电池(面积= 22.5cm(2))的性能。

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