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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Formation and equilibrium of ammonia in the Mg(NH2)(2)-2LiH hydrogen storage system
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Formation and equilibrium of ammonia in the Mg(NH2)(2)-2LiH hydrogen storage system

机译:Mg(NH2)(2)-2LiH储氢系统中氨的形成和平衡

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The equilibrium concentration of NH3 in the volatile products of the reaction between Mg(NH2)(2) and 2LiH and the decomposition of Mg(NH2)2 and LiNH2, respectively, depends strongly on the reaction temperatures. The enthalpy changes of NH3 generation in the decomposition of LiNH2 and Mg(NH2)(2) are deduced from the slopes of van't Hoff plots to be ca. 43.4 and 40.8 kJ/mol, respectively. When 600 psi hydrogen pressure was applied, the corresponding enthalpy changes increased to ca. 54.2 and 50.5 kJ/mol, respectively. For the Mg(NH2)(2)-2LiH system, the enthalpy change of NH3 generation in hydrogen desorption was calculated to be ca. 80.3 kJ/mol, which is substantially higher than those of the decomposition of Mg(NH2)(2) and LiNH2. When high H-2 pressure (higher than equilibrium pressure) was applied, the corresponding enthalpy change decreased to ca. 51.3 kJ/mol, which is close to that of the decomposition of Mg(NH2)2 under high H-2 pressure.
机译:Mg(NH2)(2)和2LiH之间反应的挥发性产物以及Mg(NH2)2和LiNH2分解的挥发性产物中的NH3平衡浓度在很大程度上取决于反应温度。从范霍夫图的斜率推导得出LiNH2和Mg(NH2)(2)分解中NH3生成的焓变。分别为43.4和40.8 kJ / mol。当施加600 psi的氢气压力时,相应的焓变增加到大约50。分别为54.2 kJ / mol和50.5 kJ / mol。对于Mg(NH2)(2)-2LiH系统,计算出的氢气脱附过程中NH3生成的焓变约为。 80.3 kJ / mol,大大高于Mg(NH2)(2)和LiNH2的分解。当施加较高的H-2压力(高于平衡压力)时,相应的焓变降低至约。 51.3 kJ / mol,与在高H-2压力下Mg(NH2)2的分解接近。

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