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首页> 外文期刊>The Journal of Chemical Physics >Poisson-Fermi modeling of ion activities in aqueous single and mixed electrolyte solutions at variable temperature
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Poisson-Fermi modeling of ion activities in aqueous single and mixed electrolyte solutions at variable temperature

机译:可变温度下含水单和混合电解质溶液中离子活性的泊松 - 费米模型

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摘要

The combinatorial explosion of empirical parameters in tens of thousands presents a tremendous challenge for extended Debye-Huckel models to calculate activity coefficients of aqueous mixtures of the most important salts in chemistry. The explosion of parameters originates from the phenomenological extension of the Debye-Huckel theory that does not take steric and correlation effects of ions and water into account. By contrast, the Poisson-Fermi theory developed in recent years treats ions and water molecules as nonuniform hard spheres of any size with interstitial voids and includes ion-water and ion-ion correlations. We present a Poisson-Fermi model and numerical methods for calculating the individual or mean activity coefficient of electrolyte solutions with any arbitrary number of ionic species in a large range of salt concentrations and temperatures. For each activity-concentration curve, we show that the Poisson-Fermi model requires only three unchanging parameters at most to well fit the corresponding experimental data. The three parameters are associated with the Born radius of the solvation energy of an ion in electrolyte solution that changes with salt concentrations in a highly nonlinear manner. Published by AIP Publishing.
机译:成千上万的经验参数的组合爆炸对扩展的Debye-Huckel模型具有巨大的挑战,以计算化学中最重要的盐的含水混合物的活性系数。参数的爆炸源自德拜德 - 哈奇理论的现象学延伸,不考虑离子和水的空间和相关效果。相比之下,近年来,泊松 - 费米理论在近年来,用间隙空隙的任何尺寸的不均匀硬球来将离子和水分子进行处理,并且包括离子水和离子离子相关性。我们介绍了一种泊松 - 费米模型和用于计算电解质溶液的个体或平均活性系数的数值方法,其在大量的盐浓度和温度中具有任意数量的离子物质。对于每个活动浓度曲线,我们表明泊松 - 费米模型最多只需要三个不变的参数,以适应相应的实验数据。三个参数与电解质溶液中的离子的溶剂能量的出生半径相关联,其以高度非线性的方式与盐浓度变化。通过AIP发布发布。

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