Thermodynamic Modeling of Surface Tension of Aqueous Electrolyte Solution by Competitive Adsorption Model

M. J. Kamali, Zakarya Kamali, G. Vatankhah
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引用次数: 3

Abstract

Thermodynamic modeling of surface tension of different electrolyte systems in presence of gas phase is studied. Using the solid-liquid equilibrium, Langmuir gas-solid adsorption and ENRTL activity coefficient model, the surface tension of electrolyte solutions are calculated. The new model has two adjustable parameters which could be determined by fitting the experimental surface tension of binary aqueous electrolyte solution in single temperature. Then the values of surface tension for other temperature in binary and ternary system of aqueous electrolyte solution are predicted. The average absolute deviations for calculation of surface tension of binary and mixed electrolyte systems by new model are 1.98 and 1.70%, respectively.
竞争吸附模型对电解质水溶液表面张力的热力学模拟
研究了气相存在时不同电解质体系表面张力的热力学模型。采用固液平衡、Langmuir气固吸附和ENRTL活度系数模型,计算了电解质溶液的表面张力。该模型具有两个可调参数,可通过拟合二元水溶液在单一温度下的实验表面张力来确定。然后预测了二元和三元水溶液中其他温度下的表面张力值。新模型计算二元和混合电解质体系表面张力的平均绝对偏差分别为1.98和1.70%。
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