Wilding Nigel B, Sollich Peter, Fasolo Moreno, Buzzacchi Matteo
Department of Physics, University of Bath, Bath BA2 7AY, United Kingdom.
J Chem Phys. 2006 Jul 7;125(1):014908. doi: 10.1063/1.2208358.
We report a joint simulation and theoretical study of the liquid-vapor phase behavior of a fluid in which polydispersity in the particle size couples to the strength of the interparticle interactions. Attention is focused on the case in which the particle diameters are distributed according to a fixed Schulz form with degree of polydispersity delta = 14%. The coexistence properties of this model are studied using grand canonical ensemble Monte Carlo simulations and moment free energy calculations. We obtain the cloud and shadow curves as well as the daughter phase density distributions and fractional volumes along selected isothermal dilution lines. In contrast to the case of size-independent interaction [N. B. Wilding et al., J. Chem. Phys. 121, 6887 (2004)], the cloud and shadow curves are found to be well separated, with the critical point lying significantly below the cloud curve maximum. For densities below the critical value, we observe that the phase behavior is highly sensitive to the choice of upper cutoff on the particle size distribution. We elucidate the origins of this effect in terms of extremely pronounced fractionation effects and discuss the likely appearance of new phases in the limit of very large values of the cutoff.
我们报告了一项关于流体气液相行为的联合模拟和理论研究,其中粒径的多分散性与粒子间相互作用强度相关联。重点关注粒径根据固定的舒尔茨形式分布且多分散度δ = 14%的情况。使用巨正则系综蒙特卡罗模拟和无矩自由能计算研究了该模型的共存性质。我们沿着选定的等温稀释线获得了云线和阴影曲线,以及子相密度分布和分数体积。与粒径无关相互作用的情况 [N. B. 威尔丁等人,《化学物理杂志》121, 6887 (2004)] 不同,发现云线和阴影曲线分得很开,临界点明显低于云线最大值。对于低于临界值的密度,我们观察到相行为对粒径分布上限的选择高度敏感。我们从极其显著的分馏效应方面阐明了这种效应的起源,并讨论了在非常大的截止值极限下可能出现的新相。