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UNIFAC modeling of cosolvent phase partitioning in nonaqueous phase liquid-water systems

机译:非水相液体-水系统中共溶剂相分配的UNIFAC建模

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In this study, an existing thermodynamic model was used to predict equilibrium phase partitioning behavior of a cosolvent in a two-phase nonaqueous phase liquid (NAPL)-water system. The activity coefficients are calculated using the universal quasichemical functional group activity coefficient (UNIFAC) method. We examined an assortment of cosolvent-NAPL pairs of environmental interest and compared the UNIFAC-predicted ternary phase diagrams against published experimentally derived ternary phase diagrams. Results show that the UNIFAC model is a promising method for predicting equilibrium cosolvent partitioning behavior in NAPL-water systems, and thus can be useful in estimating the potential for NAPL solubilization and mobilization in remediation processes. The cosolvent partitioning behavior is interpreted with regard to changes in the physical properties of the NAPL-water system. Changes in interfacial tension between the two phases were estimated using an existing correlation. A viscosity experiment was conducted for selected mixtures of ethanol, toluene, and water; and the viscosity was found to increase with increasing amounts of the cosolvent.
机译:在这项研究中,现有的热力学模型用于预测两相非水相液体(NAPL)-水系统中助溶剂的平衡相分配行为。使用通用准化学官能团活度系数(UNIFAC)方法计算活度系数。我们检查了对环境有益的助溶剂-NAPL对的种类,并将UNIFAC预测的三元相图与已发布的实验得出的三元相图进行了比较。结果表明,UNIFAC模型是预测NAPL-水系统中平衡助溶剂分配行为的一种有前途的方法,因此可用于估计NAPL在修复过程中的增溶和迁移潜力。关于NAPL-水系统的物理性质的变化来解释助溶剂分配行为。使用现有的相关性来估算两相之间的界面张力的变化。对乙醇,甲苯和水的选定混合物进行了粘度实验;并且发现粘度随着助溶剂量的增加而增加。

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