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Evaluating the Effect of Metal Bipolar Plate Coating on the Performance of Proton Exchange Membrane Fuel Cells

机译:评价金属双极板涂层对质子交换膜燃料电池性能的影响

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摘要

Environmental concerns of greenhouse gases (GHG) effect from fossil commodities and the fast increase in global energy demand have created awareness on the need to replace fossil fuels with other sources of clean energy. PEM fuel cell (PEMFC) is a promising source of energy to replace fossil fuels. The commercialization of the cell depends on its price, weight and mechanical strength. Bipolar plates are among the main components of PEMFC which perform some significant functions in the fuel cell stack. Metal bipolar plate is considered by the research community as the future material for fuel cells. However, surface coating is required for metals to enhance its corrosion resistance, hydrophilicity and interfacial contact resistance (ICR) in PEM fuel cells. Open pore cellular metal foam (OPCMF) materials have been used to replace the conventional flow field channel in recent times due to its low electrical resistance, high specific area and high porosity; however, it endures the same corrosion problem as the metallic bipolar plate. This investigation offers an overview on different types of bipolar plates and techniques in coating metallic bipolar platse and open pore metal foam as flow field channel materials to improve the corrosion resistance which will eventually increase the efficiency of the fuel cell appreciably.
机译:对化石商品的温室气体(GHG)效应的环境问题和全球能源需求的快速增长已经创造了对用其他清洁能源的其他来源取代化石燃料的需要。 PEM燃料电池(PEMFC)是替代化石燃料的有希望的能量来源。电池的商业化取决于其价格,重量和机械强度。双极板是PEMFC的主要成分之一,其在燃料电池堆中进行一些重要功能。研究界认为金属双极板作为燃料电池的未来材料。然而,金属需要表面涂层,以提高PEM燃料电池中的耐腐蚀性,亲水性和界面接触电阻(ICR)。开放的孔细胞金属泡沫(OPCMF)材料已被用于近近一次替代传统的流场沟道由于其低电阻,高特定区域和高孔隙率;然而,它持续与金属双极板相同的腐蚀问题。本研究提供了概述的不同类型的双极板和涂料金属双极压力板的技术,以及开放的孔金属泡沫作为流场通道材料,以提高耐腐蚀性,最终将显着提高燃料电池的效率。

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