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Using Molecular Simulations To Develop Reliable Design Tools and Correlations for Engineering Applications of Aqueous Electrolyte Solutions

机译:使用分子模拟为电解质水溶液的工程应用开发可靠的设计工具和相关性

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Many industrial processes involve processing aqueous electrolyte solutions. There is thus a need for accurate theories to predict their thermophysical properties. Recent studies have shown that the size of the hydrated ion plays an important role in determining these properties. In this study, we first used molecular dynamics simulations to estimate the effective hydrated ionic size and the free energy of solvation, and then developed correlations allowing for the prediction of these quantities. The temperature dependence of these solution properties was also investigated. Our studies have shown that the effective (hydrated) size, the charge density, and the free energy of solvation of the ions are strongly interdependent. The effective hydrated ionic size also plays an important role in determining the selectivity of membranes to remove such hydrated ions from solutions, for example, in membrane based desalination processes, and related water purification technologies.
机译:许多工业过程涉及处理电解质水溶液。因此,需要精确的理论来预测其热物理性质。最近的研究表明,水合离子的大小在确定这些性质方面起着重要作用。在这项研究中,我们首先使用分子动力学模拟来估算有效水合离子的大小和溶剂化的自由能,然后开发相关性以预测这些量。还研究了这些溶液性质的温度依赖性。我们的研究表明,离子的有效(水合)大小,电荷密度和溶剂化自由能是高度相互依赖的。有效的水合离子尺寸在确定膜从溶液中除去此类水合离子的选择性方面也起着重要作用,例如,在基于膜的脱盐工艺和相关的水净化技术中。

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