SYNTHESIS, CHARACTERIZATION AND HYDROGENATION BEHAVIOR OF MG-XWT-PERCENT-FETI(MN) AND LA2MG17-XWT-PERCENT-LANI5-NEW HYDROGEN STORAGE COMPOSITE ALLOYS

被引:43
作者
MANDAL, P [1 ]
DUTTA, K [1 ]
RAMAKRISHNA, K [1 ]
SAPRU, K [1 ]
SRIVASTAVA, ON [1 ]
机构
[1] TECHNOL INNOVAT PROD,TROY,MI 48098
关键词
D O I
10.1016/0925-8388(92)90450-N
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
New hydrogen storage materials with higher capacity and better suited for applications have been successfully synthesized. The hydriding behaviour of the new composite materials, Mg-xwt.%FeTi(Mn) and La2Mg17-xwt.%LaNi5, were studied for various values of x (x = 10, 20, 30, 40 and 50). The Mg-x%FeTi(Mn) materials were activated under a hydrogen atmosphere (about 33 kgf cm-2) and an optimum storage capacity of about 3.5 wt.% corresponding to room temperature hydrogenation was established for x = 40. This high storage capacity-almost double the storage capacity of the well-known FeTi(Mn)-has been observed under ambient conditions. The La2Mg17-x%LaNi5 materials were activated at higher temperatures (about 360-degrees-C) in a hydrogen atmosphere. An optimum storage capacity of 4 wt.% in terms of pressure and composition was observed for La2Mg17-20%LaNi5 at 350-degrees-C. In comparison with the native ingredient La2Mg17, much faster (nearly three times) kinetics were found. In order to understand the hydrogenation behaviour and the high storage capacity, structural-microstructural and chemical analyses of these composite materials were carried out. From the structural investigations it has been found that all the synthesized materials are multiphase. The composite material Mg-FeTi(Mn) was found to contain FeTi1-x, magnesium, titanium and Ti-Mg phases. The higher storage capacity (about 3.5 wt.%) in the case of Mg-40%FeTi(Mn) is probably due to FeTi-Mg complexes. The hydrogen molecule is split at the FeTi surface and diffuses into the magnesium matrix via FeTi. In the case of La2Mg17-x%LaNi5, the composite material consists of La2Mg17, MgNi2, nickel and LaNi3 phases. Because of the presence of nickel and nickel-containing phases (e.g. Mg-Ni), it is assumed that the dissociation of hydrogen is easier and hence the system La2Mg17-x%LaNi5 has better kinetics than its counterpart La2Mg17 alone.
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页码:1 / 9
页数:9
相关论文
共 14 条
[1]   INVESTIGATION ON SYNTHESIS, CHARACTERIZATION AND HYDROGENATION BEHAVIOR OF THE LA2MG17 INTERMETALLIC [J].
DUTTA, K ;
SRIVASTAVA, ON .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 1990, 15 (05) :341-344
[2]   THE PREPARATION AND SOME PROPERTIES OF MAGNESIUM HYDRIDE [J].
ELLINGER, FH ;
HOLLEY, CE ;
MCINTEER, BB ;
PAVONE, D ;
POTTER, RM ;
STARITZKY, E ;
ZACHARIASEN, WH .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1955, 77 (09) :2647-2648
[3]   ENGINEERING PROPERTIES OF METAL-HYDRIDES [J].
HUSTON, EL ;
SANDROCK, GD .
JOURNAL OF THE LESS-COMMON METALS, 1980, 74 (02) :435-443
[4]  
KHURUSSANOVA M, 1982, J LESS-COMMON MET, V86, P153
[5]  
MANDAL P, UNPUB INT J HYDROGEN
[6]   HYDROGEN STORAGE CHARACTERISTICS OF FETI CONTAINING ZIRCONIUM [J].
NAGAI, H ;
KITAGAKI, K ;
SHOJI, K .
TRANSACTIONS OF THE JAPAN INSTITUTE OF METALS, 1988, 29 (06) :494-501
[7]   HYDRIDING CHARACTERISTICS OF MG-XWT-PERCENT-LANI5 SINTERED ALLOYS [J].
NAGAI, H ;
TOMIZAWA, H ;
OGASAWARA, T ;
SHOJI, K .
JOURNAL OF THE LESS-COMMON METALS, 1990, 157 (01) :15-24
[8]  
RAMAKRISHNA K, 1987, PROGR HYDROGEN ENERG, V7, P81
[9]   REACTION HYDROGEN WITH ALLOYS MAGNESIUM AND NICKEL AND FORMATION OF MG2NIH4 [J].
REILLY, JJ ;
WISWALL, RH .
INORGANIC CHEMISTRY, 1968, 7 (11) :2254-&
[10]  
Shen Panwen, 1985, CHEM J CHINESE U, V6, P197