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方阱吸引和位点位相互作用的类水流体模型在狭缝孔中的吸附和相行为:密度泛函方法。

Adsorption and phase behavior of water-like fluid models with square-well attraction and site-site association in slit-like pores: Density functional approach.

机构信息

Instituto de Química, Universidad Nacional Autónoma de México, Circuito Exterior, 04510 Cd. de México, México.

Department for the Modelling of Physico-Chemical Processes, Maria Curie-Skłodowska University, Lublin 20-031, Poland.

出版信息

J Chem Phys. 2018 Oct 7;149(13):134701. doi: 10.1063/1.5047018.

Abstract

The adsorption and phase behavior of two model fluids, both with square well inter-particle attraction and site-site associative interaction, in slit-like pores have been studied in the framework of a density functional theory. The mean field approach and the first-order mean spherical approximation have been applied to account for the attractive interactions. The chemical association effects are taken into account by using the first-order thermodynamic perturbation theory of Wertheim. A set of parameters for each fluid model has been chosen according to the work of [Clark , Mol. Phys. , 3561 (2006)], to describe successfully the vapor-liquid coexistence of water in the bulk phase. The influence of the slit-like pore width and of the strength of gas-solid interaction energy on the vapor-liquid coexistence envelope under confinement has been explored in detail. The theory and the results of the present work are valuable for further exploration of a wide set of models of associating fluids and of fluids with complex molecular architecture in different adsorbents, and to deal with activated carbon surfaces.

摘要

在密度泛函理论的框架下,研究了两种具有方阱粒子间吸引和位点位相互作用的模型流体在狭缝孔中的吸附和相行为。平均场方法和一阶平均球近似被应用于考虑吸引相互作用。化学缔合效应通过使用 Wertheim 的一阶热力学微扰理论来考虑。根据[Clark,Mol. Phys.,3561(2006)]的工作,为每个流体模型选择了一组参数,以成功描述本体相中水的汽液共存。详细探讨了狭缝孔宽度和气体-固体相互作用能强度对受限条件下汽液共存包络线的影响。本工作的理论和结果对于进一步探索广泛的缔合流体模型和不同吸附剂中具有复杂分子结构的流体以及处理活性炭表面具有重要意义。

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