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Development of Hydrogen Storage Tank Systems Based on Complex Metal Hydrides

机译:基于复合金属氢化物的储氢罐系统的开发

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摘要

This review describes recent research in the development of tank systems based on complex metal hydrides for thermolysis and hydrolysis. Commercial applications using complex metal hydrides are limited, especially for thermolysis-based systems where so far only demonstration projects have been performed. Hydrolysis-based systems find their way in space, naval, military and defense applications due to their compatibility with proton exchange membrane (PEM) fuel cells. Tank design, modeling, and development for thermolysis and hydrolysis systems as well as commercial applications of hydrolysis systems are described in more detail in this review. For thermolysis, mostly sodium aluminum hydride containing tanks were developed, and only a few examples with nitrides, ammonia borane and alane. For hydrolysis, sodium borohydride was the preferred material whereas ammonia borane found less popularity. Recycling of the sodium borohydride spent fuel remains an important part for their commercial viability.
机译:这篇综述描述了基于复杂金属氢化物进行热解和水解的储罐系统开发的最新研究。使用复杂的金属氢化物的商业应用是有限的,特别是对于到目前为止仅执行了示范项目的基于热分解的系统。基于水解的系统由于与质子交换膜(PEM)燃料电池兼容而在太空,海军,军事和国防应用中找到了自己的方式。在这篇综述中,将更详细地介绍热解和水解系统的储罐设计,建模和开发以及水解系统的商业应用。为了进行热分解,主要开发了含有氢化铝钠的储罐,只有少数例子包含氮化物,氨硼烷和铝烷。对于水解而言,硼氢化钠是优选的材料,而硼烷氨则不太受欢迎。硼氢化钠废燃料的再循环仍然是其商业可行性的重要组成部分。

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