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Theoretical study of hydrogen absorption-desorption on LaNi3.8Al1.2-xMnx using statistical physics treatment

机译:统计物理治疗Lani3.8Al1.2-XMNX氢吸收解吸的理论研究

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The hydrogen absorption-desorption isotherms on LaNi3.8Al1.2-xMnx alloy at temperature T = 433 K is studied through various theoretical models. The analytical expressions of these models were deduced exploiting the grand canonical ensemble in statistical physics by taking some simplifying hypotheses. Among these models an adequate model which presents a good correlation with the experimental curves has been selected. The physicochemical parameters intervening in the absorption-desorption processes and involved in the model expressions could be directly deduced from the experimental isotherms by numerical simulation. Six parameters of the model are adjusted, namely the numbers of hydrogen atoms per site n(1) and n(2), the receptor site densities N-1m and N-2m, and the energetic parameters P-1 and P-2. The behaviors of these parameters are discussed in relation with absorption and desorption processes to better understand and compare these phenomena. Thanks to the energetic parameters, we calculated the sorption energies which are typically ranged between 266 and 269.4 KJ/mol for absorption process and between 267 and 269.5 KJ/mol for desorption process comparable to usual chemical bond energies. Using the adopted model expression, the thermodynamic potential functions which govern the absorption/desorption process such as internal energy E-int, free enthalpy of Gibbs G and entropy S-a are derived.
机译:通过各种理论模型研究了Lani3.8Al1.2-XMNX合金上的氢吸收 - 解吸等温线T = 433k。通过采取一些简化的假设,推导出这些模型的分析表达式在统计物理学中利用统计物理中的大典型集合。在这些模型中,已经选择了具有与实验曲线良好相关性的适当模型。干预在吸收 - 解吸过程中并且涉及模型表达的物理化学参数可以通过数值模拟直接推导出实验等温线。调整模型的六个参数,即每个位点N(1)和N(2),受体位点N-1M和N-2M的氢原子的数量,以及能量参数P-1和P-2。这些参数的行为与吸收和解吸过程相关,以更好地理解并比较这些现象。由于能量参数,我们计算了吸收剂的吸附能量,用于吸收过程的266和269.4 kJ / mol之间,并且在267和269.5 kJ / mol之间进行解吸过程,可与通常的化学键合能相当。使用所采用的模型表达式,导出控制吸收/解吸过程的热力学潜在功能,例如内能量E-Int,Gibbs G和熵S-A的自由焓。

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