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Spatially resolved hydrogen desorption from aluminum hydride observed by magnetic resonance imaging

机译:磁共振成像观察到氢氧化铝从空间解析解吸氢

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摘要

Light metal hydrides represent a promising class of materials for hydrogen storage. However, there are several technical challenges to overcome before their potential can be realized. Key among these is the often adverse absorption and desorption kinetics, which are a function of intrinsic reaction rates and practical operating temperatures. Modifying and controlling these kinetics require a thorough understanding of the hydrogen absorption and desorption processes. In this study, we have investigated the thermal decomposition of aluminum hydride, AlH_3, with Magnetic Resonance Imaging in order to visualize spatially the progress and extent of the reaction.
机译:轻金属氢化物代表了一种有前途的储氢材料。但是,在实现其潜力之前,还需要克服一些技术挑战。其中关键是经常不利的吸收和解吸动力学,这是固有反应速率和实际操作温度的函数。修改和控制这些动力学要求对氢吸收和解吸过程有透彻的了解。在这项研究中,我们用磁共振成像技术研究了氢化铝AlH_3的热分解,以便在空间上可视化反应的进程和程度。

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