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Thermodynamics study of hydrogen storage materials

机译:Thermodynamics study of hydrogen storage materials

摘要

The growing use of conventional energy such as fossil fuels results in problems degrading our environment. Hydrogen is frequently discussed as a clean energy in the future without pollution. However, efficient and safe storage of hydrogen constitute a key challenge and unresolved problem. One of the main options is solid-state storage technology. A successful solid-state reversible storage material should meet the requirements of high storage capacity, suitable thermodynamic properties, reversibility and fast adsorption and desorption kinetics. This feature article focuses mainly on the development of thermodynamic improvement of hydrogen storage materials in the past few years including the complex hydride, ammonia borane, and metal-organic frameworks. (C) 2011 Elsevier Ltd. All rights reserved.
机译:诸如化石燃料之类的常规能源的使用日益增加,导致环境恶化的问题。氢经常被讨论为未来的无污染清洁能源。然而,氢的有效和安全存储构成了关键的挑战和未解决的问题。固态存储技术是主要的选择之一。成功的固态可逆存储材料应满足高存储容量,合适的热力学性质,可逆性以及快速吸附和解吸动力学的要求。这篇专题文章主要关注近年来储氢材料热力学改进的发展,包括复合氢化物,氨硼烷和金属有机骨架。 (C)2011 Elsevier Ltd.保留所有权利。

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