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The hydrogen storage properties of destabilized MgH2-AlH3 (2:1) system
被引:24
作者:
Ismail, M.
[1
]
机构:
[1] Univ Malaysia Terengganu, Sch Ocean Engn, Kuala Terengganu, Terengganu, Malaysia
关键词:
Hydrogen storage;
Magnesium hydride;
Aluminium hydride;
Destabilized system;
REACTION-MECHANISM;
MGH2-NAALH4;
COMPOSITE;
HYDRIDING BEHAVIOR;
MAGNESIUM HYDRIDE;
SORPTION KINETICS;
METAL-HYDRIDES;
MGH2;
DEHYDROGENATION;
DESORPTION;
ALLOY;
D O I:
10.1016/j.matpr.2016.01.011
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
Systematic investigations on the hydrogen storage properties of AlH3 destabilized MgH2 is investigated. It is found that the MgH2/AlH3 (2:1) composite system showed improved dehydrogenation performance compared with that of as-milled MgH2 alone. The dehydrogenation process in the MgH2/AlH3 composite can be divided into two stages. During the first dehydrogenation process, AlH3 decomposed first to produce Al with hydrogen release. In the second dehydrogenation stage, the as-formed Al phase reacts with MgH2 to form Mg17Al12 phase at a temperature of about 250 degrees C, which is about 80 degrees C lower than the decomposition temperature of as-milled MgH2. The second step decomposition enthalpy of the system was determined by differential scanning calorimetry measurements and the enthalpies change to be 45.0 kJ mol(-1) H-2, which is smaller than that of MgH2 alone (75.7 kJ mol(-1) H-2). Kissinger analysis indicated that the apparent activation energy, E-A, for the MgH2-relevent decomposition in MgH2-AlH3 composite was 94.0 kJ mol(-1), which is 68.0 kJ mol(-1) less than for as-milled MgH2 (162.0 kJ mol(-1)). Rehydrogenation processes show that Mg17Al12 is fully reversible. It is believed that the formation of the Al12Mg17 phase during the dehydrogenation process alters the reaction pathway of the MgH2-AlH3 (2:1) composite system and improves its thermodynamic properties accordingly. (C) 2016 The Authors. Published by Elsevier Ltd.
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页码:S80 / S87
页数:8
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