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Predicting the equilibrium solubility of solid polycyclic aromatic hydrocarbons and dibenzothiophene using a combination of MOSCED plus molecular simulation or electronic structure calculations

机译:使用培养基加分子模拟或电子结构计算的组合预测固体多环芳烃和二苯噻吩的平衡溶解度

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Methods to predict the equilibrium solubility of non-electrolyte solids are important for the design of novel separation processes. Here we demonstrate how conventional molecular simulation free energy calculations or electronic structure calculations in a continuum solvent, here SMD or SM8, can be used to predict parameters for the MOdified Separation of Cohesive Energy Density (MOSCED) method. The method is applied to the solutes naphthalene, anthracene, phenanthrene, pyrene and dibenzothiophene, compounds of interested to the petroleum industry and for environmental remediation. Adopting the melting point temperature and enthalpy of fusion of these compounds from experiment, we are able to predict equilibrium solubilities. Comparing to a total of 422 non-aqueous and 193 aqueous experimental solubilities, we find the proposed method is able to well correlate the data. The use of MOSCED is additionally advantageous as it is a solubility parameter-based method useful for intuitive solvent selection and formulation.
机译:预测非电解质固体平衡溶解度的方法对于新型分离过程的设计是重要的。在这里,我们证明了在连续溶剂中的常规分子模拟自由能量计算或电子结构计算,这里SMD或SM8可用于预测粘性能量密度(摩疮)方法的改性分离的参数。该方法应用于溶质萘,蒽,菲,芘和二苯并噻吩,对石油工业感兴趣的化合物和环境修复。采用这些化合物的熔点温度和从实验中融合的熔点,我们能够预测平衡溶解度。比较总共422个非水和193水性实验溶解度,我们发现所提出的方法能够良好地关联数据。培养的使用另外有利,因为它是一种可用于直观溶剂选择和配方的基于溶解度参数的方法。

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