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Liquid-Liquid Phase Equilibria and Capillary Condensation in Confined Nanopores

机译:限制纳米孔的液液相平衡和毛细血管凝结

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Capillary condensation and phase diagrams of gases confined in nanoporous materials are of industrial and technological importance in gas adsorption operations with molecular sieves, membranes, and nanomaterials such as aerogels, carbon nanotubes, fullerenes, and nanopowders. The simplest fluid mixtures that can exhibit liquid-liquid phase separation are the non-additive hard sphere mixtures. This type of systems is studied inside random porous materials of nanometer-sized pores. Both Monte Carlo simulation and integral equation theory are used to investigate a series of mixtures of different nonadditivities Δ (from 0 to 0.2, and up to 0.4). We notice that the lower critical solution temperature (LCST) in pores is "lowered" as compared to the bulk case, even for simple gases such as hard spheres, in conformity to the experiments on helium 4 in aerogels.
机译:纳米多孔材料限制的气体毛细血管冷凝和相图是具有分子筛,膜和纳米材料的天然气吸附作用的工业和技术重要性,例如气凝胶,碳纳米管,富勒烯和纳米粉末。可以表现出液相分离的最简单的流体混合物是非添加剂硬球混合物。在纳米尺寸孔的随机多孔材料内研究了这种类型的系统。蒙特卡罗模拟和整体方程理论均用于研究不同非additivitiesδ的一系列混合物(0至0.2,最高0.4)。我们注意到与散装壳体相比,孔隙较低的临界溶液温度(LCST)是“降低”,即使对于诸如硬球的简单气体,符合Aerogels氦4的实验。

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