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Bridging two-liquid theory with molecular simulations for electrolytes: An investigation of aqueous NaCl solution

机译:用于电解质的分子模拟的桥接双液理论:NaCl水溶液的研究

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摘要

We reexamine the theoretical framework of electrolyte nonrandom two-liquid model and formulate the binary interaction parameters as functions of species diameter (sigma), effective interaction strength (e), the domain radius around the center species (R), and the nonrandomness factor (alpha). We show that these quantities can be directly obtained from molecular simulations using aqueous NaCl as the model system. The binary interaction parameters determined from the simulations are consistent with those obtained from regression of experimental data. Our work provides a molecular interpretation of the classical thermodynamic model and shows a way to predict from molecular simulations the binary interaction parameters for use in process industries. (c) 2019 American Institute of Chemical Engineers AIChE J, 65: 1315-1324, 2019
机译:我们重新审视电解质非random模型的理论框架,并将二元相互作用参数作为物质直径(Sigma),有效相互作用强度(E),中心物种(R)周围的域半径和非粗糙因子( α)。 我们表明这些量可以使用NaCl水溶液作为模型系统直接从分子模拟中获得。 从模拟确定的二进制交互参数与从实验数据的回归中获得的二进制交互参数一致。 我们的工作提供了经典热力学模型的分子解释,并显示了一种方法来预测分子模拟工艺行业的二元交互参数。 (c)2019美国化学工程师学院Aiche J,65:1315-1324,2019

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