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首页> 外文期刊>Journal of Solution Chemistry >A New Model of Excess Gibbs Energy for Systems Containing Polymer-Salt-Water Applicable to Aqueous Two Phase Systems
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A New Model of Excess Gibbs Energy for Systems Containing Polymer-Salt-Water Applicable to Aqueous Two Phase Systems

机译:适用于水两相系统的含聚合物-盐-水系统的多余吉布斯能量新模型

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摘要

A new thermodynamics model is presented for the phase equilibria calculations of 15 different aqueous two phase systems (ATPSs). The systems consist of water, polyethylene glycol and various salts (ammonium sulfate, sodium sulfate and sodium tartrate). The excess Gibbs energy model developed in the present study consists of three different terms. Long range and short range contributions and a combinatorial part of the excess Gibbs energy are used for obtaining the activity coefficient of species in the mixture. For the long range term, an extended Debye-Huckel equation is used and the Freed-FV equation is applied to calculate the combinatorial part of activity coefficient. For the short range contribution a new model based on the virial osmotic coefficient is developed to determine the equilibrium composition in ATPSs. Moreover, binary interaction parameters and calculated binodal curve data of each system are reported. The results show that the absolute average deviation percent (AAD%) of the model was less than 1% for the studied systems. Also, the phase equilibria calculations were done using UNIQUAC, UNIFAC, MNRTL-NRF and Modified Wilson equations to compare the results of the models with the results obtained by the new presented model. The results show that the new model can calculate the phase equilibria in ATPS systems better than most of the above equations.
机译:提出了一种新的热力学模型,用于计算15种不同的水相两相系统(ATPSs)的相平衡。该系统由水,聚乙二醇和各种盐(硫酸铵,硫酸钠和酒石酸钠)组成。本研究中开发的多余吉布斯能量模型由三个不同的术语组成。长距离和短距离贡献以及多余的吉布斯能量的组合部分用于获得混合物中物质的活度系数。对于远期项,使用扩展的Debye-Huckel方程,并使用Freed-FV方程计算活度系数的组合部分。对于短程贡献,开发了一种基于病毒渗透系数的新模型来确定ATPS中的平衡组成。此外,还报告了每个系统的二元相互作用参数和计算出的双曲线曲线数据。结果表明,所研究系统的模型绝对平均偏差百分比(AAD%)小于1%。同样,使用UNIQUAC,UNIFAC,MNRTL-NRF和Modified Wilson方程进行了相平衡计算,以将模型的结果与新提出的模型获得的结果进行比较。结果表明,与大多数上述方程相比,新模型可以更好地计算ATPS系统中的相位平衡。

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