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Improved polymer electrolyte fuel cell performance with membrane electrode assemblies using modified metallic plate: Comparative study on impact of various coatings

机译:改进的聚合物电解质燃料电池性能与使用改性金属板的膜电极组件:各种涂层撞击的比较研究

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Bipolar plate is one of the key components of polymer electrolyte membrane fuel cell. In the present study, metallic plates are explored as bipolar plates in comparison to most generally used high-density graphite plates. Among various metals, stainless steel 316L is preferred due to its low cost, high strength, ease of machining and for its corrosion resistance characteristics. However, the challenges associated with metallic plates are high interfacial contact resistance due to passive oxide layer formation and possible corrosion product during operation in chemically harsh environments, which may contaminate the membrane electrode assembly. Three electrically conductive and corrosion resistant coatings namely Titanium Nitrides, Plasma Nitride, and Gold have been coated over the surface of stainless steel 316L metallic plate to overcome these challenges and to explore their impact on fuel cell performance using standard membrane electrode assemblies. These coatings are characterized by X-Ray Diffraction, Scanning Electron Microscopy and Energy Dispersive X-ray Spectroscopy along with interfacial contact resistance measurements. Further, the coated SS plates have been tested in real time polymer electrolyte membrane fuel cell operation for their use as bipolar plates and their performances have been compared with the fuel cell comprising conventional graphite plates. A cell comprising Titanium Nitride, Gold and Plasma Nitride coated metallic plates exhibit a power density of 430, 720 & 268 mW cm(-2) respectively, at an operating fuel cell potential of 0.6 V. Gold coated metallic plate shows comparable polymer electrolyte membrane fuel cell performance in relation to conventional graphite plate. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:双极板是聚合物电解质膜燃料电池的关键部件之一。在本研究中,与最普遍使用的高密度石墨板相比,金属板作为双极板探索为双极板。在各种金属中,由于其低成本,高强度,加工容易和其耐腐蚀特性,不锈钢316L是优选的。然而,与金属板相关联的挑战是由于在化学苛刻环境中的无源氧化物层形成和可能的腐蚀产品中,这可能是高界面接触电阻,这可能污染膜电极组件。三个导电和耐腐蚀涂层即氮化钛,血浆氮化物和金已经涂覆在不锈钢316L金属板的表面上,以克服这些挑战,并利用标准膜电极组件探讨它们对燃料电池性能的影响。这些涂层的特征在于X射线衍射,扫描电子显微镜和能量分散X射线光谱以及界面接触电阻测量。此外,涂覆的SS板已经在实时测试的聚合物电解质膜燃料电池操作中,其用作双极板,并且它们的性能已经与包含常规石墨板的燃料电池进行比较。包含氮化钛,金和等离子体氮化物涂覆的金属板的电池,分别在0.6V的操作燃料电池电位下分别表现出430,720&268mWcm(-2)的功率密度。金涂层金属板表示相当的聚合物电解质膜燃料电池性能与常规石墨板相关。 (c)2019氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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