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Adsorption of probe molecules in pillared interlayered clays: Experiment and computer simulation

机译:探针分子在柱状夹层粘土中的吸附:实验和计算机模拟

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摘要

In this paper we investigate the adsorption of various probe molecules in order to characterize the porous structure of a series of pillared interlayered clays (PILC). To that aim, volumetric and microcalorimetric adsorption experiments were performed on various Zr PILC samples using nitrogen, toluene, and mesitylene as probe molecules. For one of the samples, neutron scattering experiments were also performed using toluene as adsorbate. Various structural models are proposed and tested by means of a comprehensive computer simulation study, using both geometric and percolation analysis in combination with Grand Canonical Monte Carlo simulations in order to model the volumetric and microcalorimetric isotherms. On the basis of this analysis, we propose a series of structural models that aim at accounting for the adsorption experimental behavior, and make possible a microscopic interpretation of the role played by the different interactions and steric effects in the adsorption processes in these rather complex disordered microporous systems. © 2014 AIP Publishing LLC.
机译:在本文中,我们研究了各种探针分子的吸附,以表征一系列柱状夹层粘土(PILC)的多孔结构。为此,使用氮,甲苯和均三甲苯作为探针分子,对各种Zr PILC样品进行了体积和微量热吸附实验。对于其中一个样品,还使用甲苯作为吸附物进行了中子散射实验。提出了各种结构模型,并通过全面的计算机模拟研究进行了测试,将几何和渗流分析与大规范蒙特卡洛模拟相结合,以对体积和微量量热等温线进行建模。在此分析的基础上,我们提出了一系列结构模型,旨在解释吸附实验行为,并使微观解释这些相互作用和空间效应在这些相当复杂的无序吸附过程中所起的作用成为可能。微孔系统。 ©2014 AIP Publishing LLC。

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