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A modified Horvath-Kawazoe method for micropore size analysis

机译:改进的Horvath-Kawazoe方法用于微孔尺寸分析

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摘要

The Horvath-Kawazoe (HK) method is a semi-empirical, anlaytic model of adsorption in micropores that is commonly used for determining the pore size distributions (PSDs) of microporous materials. The HK method is a substantial improvement over classical adsorption models 9e.g. Kelvin-based methods) in that the adsobate potential interactions with the adsorbent surfaces are explicitly accounted for. One of the principal shortcomings of the original HK method, however, is that the mean potential energy change due to adsorption is calcualted from an unweighted average over position within the micropore. It is known from molecular simulation studies of adsorption at subcritical temperatures that the local density of the adsorbate in the pore varies strongly with position due to fluid layering near the pore walls. The omission of this structure dependence from the original HK model leads to an overestimation of micropore filling pressures relative to the exact filling pressures calculated from molecular simulations.
机译:Horvath-Kawazoe(HK)方法是微孔中吸附的半经验性粘土模型,通常用于确定微孔材料的孔径分布(PSD)。 HK方法是对经典吸附模型9e.g.的重大改进。基于开尔文的方法),其中已明确说明了与吸附剂表面的潜在潜在的相互作用。但是,原始HK方法的主要缺点之一是,由于吸附的平均势能变化是根据微孔内未加权平均位置计算得出的。从在亚临界温度下的吸附的分子模拟研究得知,由于孔壁附近的流体分层,孔中被吸附物的局部密度随位置而强烈变化。原始HK模型忽略了这种结构依赖性,导致相对于分子模拟计算出的精确填充压力,高估了微孔填充压力。

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