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Acceptability envelope for metal hydride-based hydrogen storage systems

机译:基于金属氢化物的储氢系统的可接受范围

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The design and evaluation of media-based hydrogen storage systems requires the use of detailed numerical models and experimental studies, with significant amount of time and monetary investment. Thus a scoping tool, referred to as the Acceptability Envelope, was developed to screen preliminary candidate media and storage vessel designs, identifying the range of chemical, physical and geometrical parameters for the coupled media and storage vessel system that allow it to meet performance targets. The model which underpins the analysis allows simplifying the storage system, thus resulting in one input-one output scheme, by grouping of selected quantities.Two cases have been analyzed and results are presented here. In the first application the DOE technical targets (Year 2010, Year 2015 and Ultimate) are used to determine the range of parameters required for the metal hydride media and storage vessel. In the second case the most promising metal hydrides available are compared, highlighting the potential of storage systems, utilizing them, to achieve 40% of the 2010 DOE technical target. Results show that systems based on Li-Mg media have the best potential to attain these performance targets.
机译:基于媒体的氢存储系统的设计和评估需要使用详细的数值模型和实验研究,需要大量的时间和金钱投资。因此,开发了一种称为“可接受信封”的范围界定工具,以筛选初步的候选介质和存储容器设计,从而确定耦合的介质和存储容器系统能够满足性能目标的化学,物理和几何参数范围。作为分析基础的模型可以简化存储系统,从而通过对选定数量进行分组来形成一种输入一输出的方案。已经分析了两种情况,并在此处介绍了结果。在首次应用中,DOE技术指标(2010年,2015年和终极技术指标)用于确定金属氢化物介质和存储容器所需的参数范围。在第二种情况下,对可用的最有希望的金属氢化物进行了比较,突出了利用它们的存储系统实现2010年DOE技术目标40%的潜力。结果表明,基于Li-Mg介质的系统最有可能实现这些性能目标。

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