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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Determination of the Heat of Hydride Formation/Decomposition by High-Pressure Differential Scanning Calorimetry (HP-DSC)
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Determination of the Heat of Hydride Formation/Decomposition by High-Pressure Differential Scanning Calorimetry (HP-DSC)

机译:高压差示扫描量热法(HP-DSC)测定氢化物形成/分解的热量

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Among the thermodynamic properties of novel materials for solid-state hydrogen storage,the heat of formation/ decomposition of hydrides is the most important parameter to evaluate the stability of the compound and its temperature and pressure of operation.In this work,the desorption and absorption behaviors of three different classes of hydrides are investigated under different hydrogen pressures using high-pressure differential scanning calorimetry (HP-DSC).The HP-DSC technique is used to estimate the equilibrium pressures as a function of temperature,from which the heat of formation is derived.The relevance of this procedure is demonstrated for (i) magnesium-based compounds (Ni-doped MgH2),(ii) Mg-Co-based ternary hydrides '(Mg-CoH_x) and (iii) Alanate complex hydrides (Ti-doped NaAlELO.From these results,it can be concluded that HP-DSC is a powerful tool to obtain a good approximation of the thermodynamic properties of hydride compounds by a simple and fast study of desorption and absorption properties under different pressures.
机译:在用于固态氢存储的新型材料的热力学性质中,氢化物的形成/分解热是评估化合物的稳定性及其操作温度和压力的最重要参数。使用高压差示扫描量热法(HP-DSC)研究了三种不同类别的氢化物在不同氢气压力下的行为.HP-DSC技术用于估算平衡压力随温度的变化,从中得出地层热量(i)镁基化合物(Ni掺杂的MgH2),(ii)Mg-Co基三元氢化物'(Mg-CoH_x)和(iii)丙酸酯复合氢化物(Ti从这些结果可以得出结论,HP-DSC是一种强大的工具,可以通过简单,快速的解吸和热解研究来获得氢化物化合物的热力学性质的良好近似值。在不同压力下的吸收性能。

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