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Numerical Analysis of the Horvath-Kawazoe Equation-The Adsorption of Nitrogen, Argon, Benzene, Carbon Tetrachloride and Sulphur Hexafluoride

机译:Horvath-Kawazoe方程的数值分析-氮,氩,苯,四氯化碳和六氟化硫的吸附

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摘要

A previously proposed numerical procedure based on the Horvath-Kawazoe (HK) model for estimating the MPSD (micropore size distribution) from a single nitrogen adsorption isotherm was developed. The results of the calculation of MSPD for two synthetic carbons obtained from numerical studies using the modified procedure are presented and discussed. These allowed the evaluation of the distribution from a single adsorption isotherm of nitrogen, argon, benzene, carbon tetrachloride and sulphur hexafluoride. In addition, the nitrogen and argon adsorption potential distributions were calculated for the same carbons applying the HK and condensation approximation (CA) methods. Agreement between these two independent approaches was observed. Differences between the MSPD obtained from HK and from the Dubinin micropore filling model (using the CONTIN package) were observed and discussed. It was shown that the structural parameter of the Dubinin-Astakov equation had no significant influence on the MSPD curves obtained.
机译:开发了一种基于Horvath-Kawazoe(HK)模型的先前提出的数值程序,用于从单个氮吸附等温线估算MPSD(微孔尺寸分布)。介绍并讨论了使用数值模拟方法从数值研究中获得的两种合成碳的MSPD计算结果。这些允许从氮,氩,苯,四氯化碳和六氟化硫的单个吸附等温线评估分布。此外,使用HK和缩合近似(CA)方法计算了相同碳的氮和氩吸附势分布。观察到这两种独立方法之间的一致性。观察和讨论了从HK和从Dubinin微孔填充模型(使用CONTIN包)获得的MSPD之间的差异。结果表明,Dubinin-Astakov方程的结构参数对获得的MSPD曲线没有显着影响。

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