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Modeling vapor liquid equilibrium of ionic liquids + gas binary systems at high pressure with cubic equations of state

机译:利用三次状态方程建模高压离子液体+气体二元系统的汽液平衡。

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Ionic liquids (IL) have been described as novel environmentally benign solvents because of their remarkable characteristics. Numerous applications of these solvents continue to grow at an exponential rate. In this work, high pressure vapor liquid equilibria for 17 different IL + gas binary systems were modeled at different temperatures with Peng-Robinson (PR) and Soave-Redlich-Kwong (SRK) equations of state, combined with the van der Waals mixing rule with two binary interaction parameters (vdW-2). The experimental data were taken from the literature. The optimum binary interaction parameters were estimated by minimization of an objective function based on the average absolute relative deviation of liquid and vapor phases, using the modified Simplex algorithm. The solubilities of all gases studied in this work decrease as the temperature increases and increase with increasing pressure. The correlated results were highly satisfactory, with average absolute relative deviations of 2.10% and 2.25% for PR-vdW-2 and SRK-vdW-2, respectively.
机译:离子液体(IL)由于其卓越的特性而被描述为新型的环境友好型溶剂。这些溶剂的大量应用以指数速度持续增长。在这项工作中,使用Peng-Robinson(PR)和Soave-Redlich-Kwong(SRK)状态方程,并结合了范德华斯混合规则,在不同温度下模拟了17种不同的IL +气体二元系统的高压汽液平衡具有两个二进制交互参数(vdW-2)。实验数据取自文献。使用改进的Simplex算法,根据液相和气相的平均绝对相对偏差,通过最小化目标函数来估算最佳二元相互作用参数。在这项工作中研究的所有气体的溶解度均随温度的升高而降低,并随压力的升高而升高。相关结果非常令人满意,PR-vdW-2和SRK-vdW-2的平均绝对相对偏差分别为2.10%和2.25%。

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