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首页> 外文期刊>International Journal of Turbo and Jet Engines >Lightweight Magnesium Bipolar Plates of Direct NaBH4/H2O2 Fuel Cell for AIP Application
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Lightweight Magnesium Bipolar Plates of Direct NaBH4/H2O2 Fuel Cell for AIP Application

机译:用于AIP的直接NaBH4 / H2O2燃料电池的轻质镁双极板

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摘要

Fuel cell based power systems have high energy density. However, using H-2 gas as fuel and O-2 as oxidizer in aerospace, UAV or underwater like an AIP (Air Independent Propulsion) environment has restrictions in terms of efficient storage. The direct borohydride hydrogen peroxide fuel cell (DBPFC) which uses aqueous NaBH4 solution as fuel and H2O2 solution as oxidizer has great advantages over the H-2/O-2 fuel cell in terms of storage efficiency, energy density and power density. These excellent characteristics make the DBPFC an appropriate power source and propulsion system for AIP systems. In this study, lightweight magnesium bipolar plates for DBPFC has been fabricated and evaluated for application in unmanned underwater vehicles. Although magnesium has many favorable properties such as lightweight, high electric conductivity and machinability, low corrosion resistance restricted its use as a bipolar plate. Corrosion resistive metal, Au electroplated magnesium bipolar plates exhibited the highest power density and the promising candidate for future aerospace, UAV and underwater propulsion systems.
机译:基于燃料电池的动力系统具有高能量密度。然而,在航空,UAV或类似AIP(空气独立推进)环境的水下使用H-2气体作为燃料和O-2作为氧化剂在有效存储方面受到限制。使用NaBH4水溶液作为燃料,使用H2O2溶液作为氧化剂的直接氢硼化氢过氧化氢燃料电池(DBPFC)在存储效率,能量密度和功率密度方面比H-2 / O-2燃料电池具有很大优势。这些出色的特性使DBPFC成为AIP系统的合适电源和推进系统。在这项研究中,已经制造了用于DBPFC的轻质镁双极板,并对其在无人水下航行器中的应用进行了评估。尽管镁具有许多有利的性质,例如重量轻,高电导率和可加工性,但是低耐腐蚀性限制了其用作双极板。耐腐蚀金属Au电镀镁双极板展现出最高的功率密度,是未来航空航天,UAV和水下推进系统的有希望的候选者。

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