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Fuel Cell Development for NASA's Human Exploration Program: Benchmarking With 'The Hydrogen Economy'

机译:NASA人类探索计划的燃料电池开发:以“氢经济”为基准

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The theoretically high efficiency and low temperature operation of hydrogen-oxygen fuel cells have motivated them to be the subject of much study since their invention in the 19th century, but their relatively high life cycle costs have kept them as a "solution in search of a problem" for many years. The first problem for which fuel cells presented a truly cost effective solution was that of providing a power source for NASA's human spaceflight vehicles in the 1960s. NASA thus invested, and continues to invest, in the development of fuel cell power plants for this application. This development program continues to place its highest priorities on requirements for minimum system mass and maximum durability and reliability. These priorities drive fuel cell power plant design decisions at all levels, even that of catalyst support. However, since the mid-1990s, prospective environmental regulations have driven increased governmental and industrial interest in "green power" and "the hydrogen economy." This has in turn stimulated greatly increased investment in fuel cell development for a variety of commercial applications. This investment is bringing about notable advances in fuel cell technology, but as these development efforts place their highest priority on requirements for minimum life cycle cost and field safety, these advances are yielding design solutions quite different at almost every level from those needed for spacecraft applications. This environment thus presents both opportunities and challenges for NASA's Human Exploration program.
机译:自19世纪发明以来,氢氧燃料电池理论上的高效率和低温运行促使它们成为许多研究的主题,但是氢燃料电池的相对较高的生命周期成本使其一直是“寻求氢燃料电池的解决方案”。问题”。燃料电池提出了真正具有成本效益的解决方案的第一个问题是在1960年代为NASA的人类航天飞行器提供电源。美国宇航局因此投资并继续投资开发用于该应用的燃料电池发电厂。该开发计划继续将最优先考虑的事项放在最小系统质量,最大耐用性和可靠性上。这些优先事项驱动着燃料电池发电厂在各个层面的设计决策,甚至是催化剂支持的决策。但是,自1990年代中期以来,预期的环境法规已促使政府和工业界对“绿色能源”和“氢经济”产生了越来越大的兴趣。反过来,这极大地刺激了对用于各种商业应用的燃料电池开发的投资。这项投资带来了燃料电池技术的显着进步,但是由于这些开发工作将最低生命周期成本和现场安全性要求作为最高优先事项,因此这些进步在几乎每个层面上都产生了与航天器应用所需的设计解决方案完全不同的设计解决方案。 。因此,这种环境为NASA的人类探索计划带来了机遇和挑战。

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