Morozov Konstantin I
Institute of Continuous Media Mechanics, Ural Branch of RAS, Perm 614013, Russia.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Mar;79(3 Pt 1):031204. doi: 10.1103/PhysRevE.79.031204. Epub 2009 Mar 30.
A theoretical approach to the description of the Soret effect in binary nonpolar liquids is proposed. The temperature gradient of the partial pressure is determined as the driving force of thermal diffusion. The hard-sphere fluid is chosen as a reference system and an explicit relation for the Soret coefficient is found. Two additive contributions owing to steric repulsions and attractive interactions form the so-called chemical contribution to S_{T} [C. Debuschewitz and W. Köhler, Phys. Rev. Lett. 87, 055901 (2001)]. The parameters of interparticle interactions are defined with the help of the solvation theory. In particular, the van der Waals constant of cross interactions is expressed via the excess volume of mixture. The proposed theory is applied to the benzene-cyclohexane system. A reasonable agreement of theoretical and experimental results is revealed for the Soret coefficient and its temperature dependence.
提出了一种描述二元非极性液体中索雷特效应的理论方法。将分压的温度梯度确定为热扩散的驱动力。选择硬球流体作为参考体系,并找到了索雷特系数的显式关系。由于空间排斥和吸引相互作用产生的两个加和贡献构成了对(S_{T})的所谓化学贡献[C. 德布施维茨和W. 克勒,《物理评论快报》87, 055901 (2001)]。粒子间相互作用的参数借助溶剂化理论来定义。特别地,交叉相互作用的范德华常数通过混合物的过量体积来表示。将所提出的理论应用于苯 - 环己烷体系。结果表明,理论结果与实验结果在索雷特系数及其温度依赖性方面具有合理的一致性。