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THERMAL MODELING OF A SODIUM BOROHYDRIDE-BASED HYDROGEN STORAGE SYSTEM

机译:基于硼氢化钠的储氢系统的热模拟

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摘要

On-board hydrogen storage has been identified as one of the most challenging technical barriers to the transition from gasoline- to hydrogen-powered vehicles. The Hydrogen-On-Demand system patented by Millennium Cell Inc. uses sodium borohydride as a hydrogen storage medium. Sodium borohydride generates hydrogen when it reacts with water in the presence of catalyst. This system is much safer than other types of storage methods, such as compressed hydrogen, liquid hydrogen and metal hydrides. Nevertheless, it suffers severe disadvantages of adding significant amount of additional heat load to the already challenging thermal management problem of fuel-cell powered vehicles. To make this hydrogen storage method attractive, innovative thermal management should be adopted. This paper models the thermal behavior of a sodium borohydride-based hydrogen storage system and considers various potential methods to reduce the on-board cooling load by increasing reactor pressure and decreasing fuel cell pressure.
机译:车载氢气存储已被认为是从汽油动力车辆过渡到氢动力车辆的最具挑战性的技术障碍之一。 Millennium Cell Inc.获得专利的按需制氢系统使用硼氢化钠作为储氢介质。硼氢化钠在催化剂存在下与水反应时会生成氢。该系统比其他类型的存储方法(例如压缩氢,液态氢和金属氢化物)安全得多。然而,其遭受了严重的缺点,即为已经挑战性的燃料电池动力车辆的热管理问题增加了大量额外的热负荷。为了使这种储氢方法具有吸引力,应采用创新的热管理方法。本文对基于硼氢化钠的储氢系统的热行为进行建模,并考虑了各种可能的方法,这些方法可通过增加反应堆压力和降低燃料电池压力来降低机载冷却负荷。

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