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Thermodynamic modeling of vapor-liquid equilibrium for binary polyethylene glycol/solvent solutions using cubic equations of state: optimization and comparison of CEoS models

机译:使用立方状态方程对二元聚乙二醇/溶剂溶液的汽液平衡进行热力学建模:CEoS模型的优化和比较

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摘要

The cubic equation of state (CEoS) is a powerful method for calculation of (vapor + liquid) equilibrium in polymer solutions. Using CEoS for both the vapor and liquid phases allows one to calculate the non-ideality of polymer solutions based on a single EoS approach. In this research, vapor-liquid equilibrium calculations of Polyethylene glycol(Polyethylene oxide)/solvent solutions were carried out. In this approach eight models containing PRSV and SRK CEoS separately combined with four mixing rules namely one-parameter van der Waals one-fluid, two-parameter van der Waals one-fluid (vdW2), Wong-Sandier, and Zhong-Masuoka were applied to calculations of bubble point pressure. For the better prediction, the adjustable binary interaction parameters existing in any mixing rule were optimized. The results were very acceptable and satisfactory. The results of absolute average deviations between predicted results and experimental bubble point pressure data were calculated and presented. Although the capability of two cubic equations of state had a good agreement with experimental data and predict the correct type of phase behavior in all cases, the performance of the PRSV+vdW2 was more reliable than the other models.
机译:立方状态方程(CEoS)是计算聚合物溶液中(蒸气+液体)平衡的有效方法。在气相和液相中使用CEoS可以使人们基于单一的EoS方法来计算聚合物溶液的非理想性。在这项研究中,进行了聚乙二醇(聚环氧乙烷)/溶剂溶液的汽-液平衡计算。在这种方法中,使用了分别包含PRSV和SRK CEoS的八个模型,并结合了四个混合规则,即一参数范德华一流体,二参数范德华一流体(vdW2),Wong-Sandier和Zhong-Masuoka计算气泡点压力。为了更好的预测,对任何混合规则中存在的可调二元相互作用参数进行了优化。结果是非常可接受和令人满意的。计算并给出了预测结果与实验气泡点压力数据之间的绝对平均偏差结果。尽管两个状态方程的能力与实验数据具有很好的一致性,并且可以在所有情况下预测正确的相行为类型,但是PRSV + vdW2的性能比其他模型更可靠。

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