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用于储氢的轻金属氢化物和复合氢化物。

Light metal hydrides and complex hydrides for hydrogen storage.

作者信息

Schüth F, Bogdanović B, Felderhoff M

机构信息

Max-Planck-Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, 45470 Mülheim, Germany.

出版信息

Chem Commun (Camb). 2004 Oct 21(20):2249-58. doi: 10.1039/b406522k. Epub 2004 Sep 21.

Abstract

The availability of feasible methods for hydrogen storage is one of the key-maybe the key-requirements for the large scale application of PEM fuel cells in cars. There are in principle four different approaches, i.e. cryostorage in liquid form, high pressure storage, storage in the form of a chemical compound which is converted to hydrogen by on-board reforming, or reversible chemical storage in different kinds of storage materials. New developments in the field of chemical storage make such systems attractive compared to the other options. This review will discuss the different possibilities for chemical storage of hydrogen and the focus on the presently most advanced system with respect to storage capacity and kinetics, i.e. catalyzed alanates, especially NaAlH(4).

摘要

具备可行的储氢方法是质子交换膜燃料电池在汽车中大规模应用的关键要求之一,甚至可能是关键要求。原则上有四种不同的方法,即液态低温储存、高压储存、以通过车载重整转化为氢气的化合物形式储存,或在不同种类的储存材料中进行可逆化学储存。与其他选择相比,化学储存领域的新进展使此类系统颇具吸引力。本综述将讨论氢气化学储存的不同可能性,并重点关注目前在储存容量和动力学方面最先进的系统,即催化铝酸盐,尤其是NaAlH₄。

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