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High-pressure solubility of light gases in heavy n-alkanes from a predictive equation of state: Incorporating Henry's law constant into binary interaction parameter

机译:从状态预测方程式看轻气体在重正构烷烃中的高压溶解度:将亨利定律常数纳入二元相互作用参数

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摘要

Using fugacity coefficient of a cubic equation of state, Henry's law constant of a solute in a solvent is incorporated into binary interaction parameter of the classical attractive parameter mixing rule. The developed equation is a function of temperature. The binary interaction parameter is evaluated by pure component critical properties and acentric factors of the solute and the solvent and the Henry's law constant of the solute in the solvent. The developed model accurately describes the solubility of gases including methane, ethane, nitrogen, carbon dioxide and hydrogen sulphide in heavy n-alkanes from low to high pressure for wide range of temperature. The solubility of methane and carbon dioxide in water is also predicted adequately. (C) 2014 Elsevier B.V. All rights reserved.
机译:使用立方状态方程的逸度系数,将溶剂中溶质的亨利定律常数纳入经典引诱参数混合规则的二元相互作用参数中。所开发的方程是温度的函数。通过纯组分的临界性质和溶质与溶剂的偏心因子以及溶质在溶剂中的亨利定律常数来评估二元相互作用参数。所开发的模型准确地描述了甲烷,乙烷,氮气,二氧化碳和硫化氢等气体在宽温度范围内从低压到高压在重链烷烃中的溶解度。还可以充分预测甲烷和二氧化碳在水中的溶解度。 (C)2014 Elsevier B.V.保留所有权利。

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