Enhanced dehydrogenation properties of LiBH4 compositing with hydrogenated magnesium-rare earth compounds

被引:13
作者
Luo, C. [1 ]
Wang, H. [1 ]
Sun, T. [1 ]
Zhu, M. [1 ]
机构
[1] S China Univ Technol, Sch Mat Sci & Engn, Guangzhou 510640, Peoples R China
关键词
Hydrogen storage; LiBH4; MgH2; Hydrogen exchange; Mg3La; STORAGE PROPERTIES; DESTABILIZATION; HYDRIDES; SYSTEM; STABILITY; BEHAVIOR; KINETICS; ALKALI; TI;
D O I
10.1016/j.ijhydene.2012.06.114
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
LiBH4 is regarded as a promising hydrogen storage material due to its high hydrogen density. In this study, the dehydrogenation properties of LiBH4 were remarkably enhanced by doping hydrogenated Mg3RE compounds (RE denotes La, Ce, Nd rare earth metals), which are composed of nanostructured MgH2 and REH2+x (denoted as H - Mg3RE). For the LiBH4 + H - Mg3La mixture, the component LiBH4 desorbed 6 wt.% hydrogen even at a relatively low temperature of 340 degrees C, far lower than the desorption temperature of pure LiBH4 or the 2LiBH(4) + MgH2 system. This kinetic improvement is attributed to the hydrogen exchange mechanism between the H - Mg3La and LiBH4, in the sense that the decomposition of MgH2 and LaH2+x catalyzed the dehydrogenation of LiBH4 through hydrogen exchange effect rather than mutual chemical reaction requiring higher temperature and hydrogen pressure. However, prior to fast hydrogen release, the hydrogen exchange effect suppressed the dehydriding of MgH2 and elevated its desorption temperature. It is expected to strengthen the hydrogen exchange effect by compositing the LiBH4 with other nanosized metal hydrides and to obtain better dehydrogenation properties. Copyright (C) 2012, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:13446 / 13451
页数:6
相关论文
共 31 条
[11]   Phase transition and hydrogen storage properties of melt-spun Mg3LaNi0.1 alloy [J].
Lin, H. J. ;
Ouyang, L. Z. ;
Wang, H. ;
Liu, J. W. ;
Zhu, M. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (01) :1145-1150
[12]   Hydrogen storage performance of LiBH4+1/2MgH2 composites improved by Ce-based additives [J].
Liu, Bin Hong ;
Zhang, Bang Jie ;
Jiang, Ying .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2011, 36 (09) :5418-5424
[13]   Stability of the LiBH4/CeH2 Composite System Determined by Dynamic pcT Measurements [J].
Mauron, Philippe ;
Bielmann, Michael ;
Remhof, Arndt ;
Zuettel, Andreas ;
Shim, Jae-Hyeok ;
Cho, Young Whan .
JOURNAL OF PHYSICAL CHEMISTRY C, 2010, 114 (39) :16801-16805
[14]   Complex hydrides for hydrogen storage [J].
Orimo, Shin-ichi ;
Nakamori, Yuko ;
Eliseo, Jennifer R. ;
Zuettel, Andreas ;
Jensen, Craig M. .
CHEMICAL REVIEWS, 2007, 107 (10) :4111-4132
[15]   A new type of Mg-based metal hydride with promising hydrogen [J].
Ouyang, L. Z. ;
Dong, H. W. ;
Peng, C. H. ;
Sun, L. X. ;
Zhu, M. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2007, 32 (16) :3929-3935
[16]   The hydrogen storage behavior of Mg3La and Mg3LaNi0.1 [J].
Ouyang, L. Z. ;
Qin, F. X. ;
Zhu, M. .
SCRIPTA MATERIALIA, 2006, 55 (12) :1075-1078
[17]   Enhanced kinetics for the LiBH4:MgH2 multi-component hydrogen storage system - The effects of stoichiometry and decomposition environment on cycling behaviour [J].
Price, Tobias E. C. ;
Grant, David M. ;
Legrand, Vincent ;
Walker, Gavin S. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2010, 35 (09) :4154-4161
[18]   Hydrogen sorption behavior of the ScH2-LiBH4 system:: Experimental assesment of chemical destabilization effects [J].
Purewal, Justin ;
Hwang, Son-Jong ;
Bowman, Robert C. ;
Ronnebro, Ewa ;
Fultz, Brent ;
Ahn, Channing .
JOURNAL OF PHYSICAL CHEMISTRY C, 2008, 112 (22) :8481-8485
[19]   Synergetic effects of hydrogenated Mg3La and TiCl3 on the dehydrogenation of LiBH4 [J].
Sun, Tai ;
Wang, Hui ;
Zhang, Qingan ;
Sun, Dalin ;
Yao, Xiangdong ;
Zhu, Min .
JOURNAL OF MATERIALS CHEMISTRY, 2011, 21 (25) :9179-9184
[20]  
U.S. Department of Energy, 2007, TECHN PLAN STOR