Mechanochemical preparation and investigation of properties of magnesium, calcium and lithium-magnesium alanates

被引:113
作者
Mamatha, A [1 ]
Bogdanovic, B [1 ]
Felderhoff, M [1 ]
Pommerin, A [1 ]
Schmidt, W [1 ]
Schüth, F [1 ]
Weidenthaler, C [1 ]
机构
[1] Max Planck Inst Kohlenforsch, D-45470 Mulheim, Germany
关键词
alanates; decomposition; DSC; hydrogen storage;
D O I
10.1016/j.jallcom.2005.06.069
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
Ball milling of MgCl2 and CaCl2 with NaAlH4 or LiAlH4 can be used for the preparation of magnesium, calcium and lithium-magnesium alanates in mixture with NaCl or LiCl. Using wet chemical separation methods, it was possible to obtain these alanates in nearly pure state. The alanates were characterized by X-ray diffractometry, solid-state Al-27 NMR and IR spectroscopy and thermovolumetric (TV) and differential scanning calorimetry (DSC) measurements. Mg(AlH4)(2) dissociates thermally in one step to MgH2, Al and hydrogen; at a higher temperature, MgH2 and Al transform to Mg-Al alloy and hydrogen. Thermal dissociations of Ca(AlH4)(2) and of LiMg(AlH4)(3) (in mixture with NaCl or LiCl) proceeds in several steps, of which the first two can be assigned to the formation of CaH2 and of a MgH2/LiH mixture, respectively, in addition to Al and H-2. Possible intermediates of these two steps are CaAlH5 and LiMgAlH6. Higher temperature dissociations include formation of MgH2 (LiH) and Ca-Al alloys from CaH2, CaH2 and Al, respectively. Upon ball milling of MgCl2 or CaCl2 with NaAlH4 or LiAlH4 in the presence of Ti catalysts, only the thermal dissociation products of the expected alanates are obtained. This indicates that dehydrogenation discharge of earth alkali metal alanates can be catalyzed by Ti. According to DSC measurements, the thermodynamic stability of Mg(AlH4)(2) (Delta H = 1.7 kJ/mol) is too low for the purpose of reversible hydrogen storage. Determination of Delta H values for the second, endothermal step of calcium and lithium-magnesium alanate dissociations gave values of around 31.6 and 13.1 kJ/mol, respectively. (c) 2005 Elsevier B.V. All rights reserved.
引用
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页码:78 / 86
页数:9
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