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质子交换膜燃料电池和水电解中用于物质和质量传输的气体扩散层之间的异同

Similarities and Differences between Gas Diffusion Layers Used in Proton Exchange Membrane Fuel Cell and Water Electrolysis for Material and Mass Transport.

作者信息

Zhang Tao, Meng Ling, Chen Chengcheng, Du Lei, Wang Ning, Xing Lixing, Tang Chunmei, Hu Jian, Ye Siyu

机构信息

Huangpu Hydrogen Energy Innovation Center, School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou, 510006, China.

China Electronic Product Reliability and Environmental Testing Research Institute (CEPREI), Guangzhou, 510610, China.

出版信息

Adv Sci (Weinh). 2024 Aug;11(32):e2309440. doi: 10.1002/advs.202309440. Epub 2024 Jun 18.

Abstract

Proton-exchange membrane fuel cells (PEMFCs) and water electrolysis (PEMWE) are rapidly developing hydrogen energy conversion devices. Catalyst layers and membranes have been studied extensively and reviewed. However, few studies have compared gas diffusion layers (GDLs) in PEMWE and PEMFC. This review compares the differences and similarities between the GDLs of PEMWE and PEMFC in terms of their material and mass transport characteristics. First, the GDL materials are selected based on their working conditions. Carbon materials are prone to rapid corrosion because of the high anode potential of PEMWEs. Consequently, metal materials have emerged as the primary choice for GDLs. Second, the mutual counter-reactions of the two devices result in differences in mass transport limitations. In particular, water flooding and the effects of bubbles are major drawbacks of PEMFCs and PEMWE, respectively; well-designed structures can solve these problems. Imaging techniques and simulations can provide a better understanding of the effects of materials and structures on mass transfer. Finally, it is anticipated that this review will assist research on GDLs of PEMWE and PEMFC.

摘要

质子交换膜燃料电池(PEMFCs)和质子交换膜水电解槽(PEMWE)是快速发展的氢能转换装置。催化剂层和膜已经得到了广泛研究和综述。然而,很少有研究比较PEMWE和PEMFC中的气体扩散层(GDLs)。本综述从材料和传质特性方面比较了PEMWE和PEMFC的GDLs之间的差异和相似之处。首先,根据GDLs的工作条件选择材料。由于PEMWE的高阳极电位,碳材料容易快速腐蚀。因此,金属材料已成为GDLs的主要选择。其次,这两种装置的相互逆反应导致传质限制存在差异。特别是,水淹和气泡的影响分别是PEMFCs和PEMWE的主要缺点;精心设计的结构可以解决这些问题。成像技术和模拟可以更好地理解材料和结构对传质的影响。最后,预计本综述将有助于对PEMWE和PEMFC的GDLs进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/895a/11348238/6a670c63f37e/ADVS-11-2309440-g007.jpg

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