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Evaluation of the enthalpy change due to hydrogen desorption for M-N-H (M = Li, Mg, Ca) systems by differential scanning calorimetry

机译:用差示扫描量热法评估M-N-H(M = Li,Mg,Ca)系统因氢解吸而产生的焓变化

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The enthalpy changes (ΔH) corresponding to the hydrogen desorption reactions LiNH_2 + LiH → Li_2NH + H_2, 3 Mg(NH_2)_2 + 8LiH → Mg_3N_2 + 4Li_2NH + 8H_2, Ca(NH_2)_2 + 2LiH → CaNH + Li_2NH + 2H_2, and 2LiNH_2 + CaH_2 → CaNH + Li_2NH + 2H_2 were evaluated using differential scanning calorimetry (DSC) and were estimated to be 66.5, 47.1, 47.7, and 48.0 kJ/mol H_2, respectively. To obtain accurate and precise values of ΔH, the cell constant of the DSC apparatus was determined using a reference sample, which has a similar hydrogen desorption temperature to those of the above systems. Furthermore, the accurate sample amount corresponding to the hydrogen desorption was estimated from the weight loss obtained by thermogravimetry (TG). It is clear from the experimental results that evaluation using DSC and TG measurements is a useful technique to obtain accurate ΔH values for the hydrogen desorption systems with complicated reaction processes. In addition, the required experimental time is shorter than those of conventional techniques using a volumetric method.
机译:与氢解吸反应LiNH_2 + LiH→Li_2NH + H_2,3 Mg(NH_2)_2 + 8LiH→Mg_3N_2 + 4Li_2NH + 8H_2,Ca(NH_2)_2 + 2LiH→CaNH + Li_2NH + 2H_2和使用差示扫描量热法(DSC)对2LiNH_2 + CaH_2→CaNH + Li_2NH + 2H_2进行了评估,估计分别为66.5、47.1、47.7和48.0 kJ / mol H_2。为了获得准确和精确的ΔH值,使用参考样品确定DSC设备的电池常数,该样品的氢解吸温度与上述系统的氢解吸温度相似。此外,根据通过热重分析(TG)获得的重量损失来估计与氢解吸相对应的准确样品量。从实验结果清楚地看出,使用DSC和TG测量进行评估是一种有用的技术,可用于获得具有复杂反应过程的氢气脱附系统的准确ΔH值。另外,所需的实验时间比使用体积法的常规技术的实验时间短。

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