A new method to determine varying adsorbed density based on Gibbs isotherm of supercritical gas adsorption

In the calculation of the absolute adsorption of supercritical gas adsorbed on the microporous materials, most existing methods regard the adsorbed density as a constant, which is very unreasonable. In this study, an extended pressure point method combined with Langmuir adsorption model is proposed...

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Main Authors: Hailiang Cai, Peichao Li, Zhixin Ge, Yuxi Xian, Detang Lu
Format: Article
Language:English
Published: SAGE Publishing 2018-12-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1177/0263617418802665
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author Hailiang Cai
Peichao Li
Zhixin Ge
Yuxi Xian
Detang Lu
author_facet Hailiang Cai
Peichao Li
Zhixin Ge
Yuxi Xian
Detang Lu
author_sort Hailiang Cai
collection DOAJ
description In the calculation of the absolute adsorption of supercritical gas adsorbed on the microporous materials, most existing methods regard the adsorbed density as a constant, which is very unreasonable. In this study, an extended pressure point method combined with Langmuir adsorption model is proposed in which the varying adsorbed density under different pressures is considered at the same time. The utility of the proposed method to correlate accurately the experimental data for supercritical gas adsorption system is demonstrated by high-pressure methane adsorption measurements on two groups of shale samples. Taking advantage of the proposed method, we can obtain the adsorbed density and the adsorbed volume corresponding to different pressures. Compared with the conventional methods under the assumption of fixed and parameterized adsorbed density, the proposed method yields better fitting results with the experimental data. Our work should provide important fundamental understandings and insights into the supercritical gas adsorption system.
format Article
id doaj-art-67db166d6e174ce490143d8a52a0cafe
institution Kabale University
issn 0263-6174
2048-4038
language English
publishDate 2018-12-01
publisher SAGE Publishing
record_format Article
series Adsorption Science & Technology
spelling doaj-art-67db166d6e174ce490143d8a52a0cafe2025-01-03T00:11:22ZengSAGE PublishingAdsorption Science & Technology0263-61742048-40382018-12-013610.1177/0263617418802665A new method to determine varying adsorbed density based on Gibbs isotherm of supercritical gas adsorptionHailiang CaiPeichao LiZhixin GeYuxi XianDetang LuIn the calculation of the absolute adsorption of supercritical gas adsorbed on the microporous materials, most existing methods regard the adsorbed density as a constant, which is very unreasonable. In this study, an extended pressure point method combined with Langmuir adsorption model is proposed in which the varying adsorbed density under different pressures is considered at the same time. The utility of the proposed method to correlate accurately the experimental data for supercritical gas adsorption system is demonstrated by high-pressure methane adsorption measurements on two groups of shale samples. Taking advantage of the proposed method, we can obtain the adsorbed density and the adsorbed volume corresponding to different pressures. Compared with the conventional methods under the assumption of fixed and parameterized adsorbed density, the proposed method yields better fitting results with the experimental data. Our work should provide important fundamental understandings and insights into the supercritical gas adsorption system.https://doi.org/10.1177/0263617418802665
spellingShingle Hailiang Cai
Peichao Li
Zhixin Ge
Yuxi Xian
Detang Lu
A new method to determine varying adsorbed density based on Gibbs isotherm of supercritical gas adsorption
Adsorption Science & Technology
title A new method to determine varying adsorbed density based on Gibbs isotherm of supercritical gas adsorption
title_full A new method to determine varying adsorbed density based on Gibbs isotherm of supercritical gas adsorption
title_fullStr A new method to determine varying adsorbed density based on Gibbs isotherm of supercritical gas adsorption
title_full_unstemmed A new method to determine varying adsorbed density based on Gibbs isotherm of supercritical gas adsorption
title_short A new method to determine varying adsorbed density based on Gibbs isotherm of supercritical gas adsorption
title_sort new method to determine varying adsorbed density based on gibbs isotherm of supercritical gas adsorption
url https://doi.org/10.1177/0263617418802665
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