Zhang Ling, Siepmann J Ilja
Department of Chemistry, University of Minnesota, 207 Pleasant Street SE, Minneapolis, Minnesota 55455-0431, USA.
J Phys Chem B. 2005 Feb 24;109(7):2911-9. doi: 10.1021/jp0482114.
Expansion of an organic solvent by an inert gas can be used to tune the solvent's liquid density, solubility strength, and transport properties. In particular, gas expansion can be used to induce miscibility at low temperatures for solvent combinations that are biphasic at standard pressure. Configurational-bias Monte Carlo simulations in the Gibbs ensemble were carried out to investigate the vapor-liquid-liquid equilibria and microscopic structures for two ternary systems: n-decane/n-perfluorohexane/CO2 and n-hexane/n-perfluorodecane/CO2. These simulations employed the united-atom version of the transferable potential for phase equilibria (TraPPE-UA) force field. Initial simulations for binary mixtures of n-alkanes and n-perfluoroalkanes showed that special mixing parameters are required for the unlike interactions of CHx and CFy pseudoatoms to yield satisfactory results. The calculated upper critical solution pressures for the ternary mixtures at a temperature of 298 K are in excellent agreement with the available experimental data and predictions using the SAFT-VR (statistical associating fluid theory of variable range) equation of state. The simulations yield asymmetric compositions for the coexisting liquid phases and different degrees of microheterogeneity as measured by local mole fraction enhancements.
用惰性气体膨胀有机溶剂可用于调节溶剂的液体密度、溶解强度和传输性质。特别地,对于在标准压力下为两相的溶剂组合,气体膨胀可用于在低温下诱导其互溶性。在吉布斯系综中进行了构型偏倚蒙特卡罗模拟,以研究两个三元体系的气-液-液平衡和微观结构:正癸烷/全氟己烷/二氧化碳和正己烷/全氟癸烷/二氧化碳。这些模拟采用了用于相平衡的可转移势(TraPPE-UA)力场的联合原子版本。正构烷烃和全氟烷烃二元混合物的初始模拟表明,对于CHx和CFy伪原子的不同相互作用,需要特殊的混合参数才能得到满意的结果。在298 K温度下计算得到的三元混合物的上临界溶液压力与现有的实验数据以及使用SAFT-VR(可变范围统计缔合流体理论)状态方程的预测结果非常吻合。模拟得出了共存液相的不对称组成以及通过局部摩尔分数增强测量的不同程度的微观不均匀性。