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Grand canonical Monte Carlo simulation study of methane adsorption at an open graphite surface and in slitlike carbon pores at 273 K

journal contribution
posted on 2024-11-01, 06:27 authored by Piotr Kowalczyk, H Tanaka, K Kaneko, Artur Terzyk, D DO
Grand canonical Monte Carlo (GCMC) simulation was used for the systematic investigation of the supercritical methane adsorption at 273 K on an open graphite surface and in slitlike micropores of different sizes. For both considered adsorption systems the calculated excess adsorption isotherms exhibit a maximum. The effect of the pore size on the maximum surface excess and isosteric enthalpy of adsorption for methane storage at 273 K is discussed. The microscopic detailed picture of methane densification near the homogeneous graphite wall and in slitlike pores at 273 K is presented with selected local density profiles and snapshots. Finally, the reliable pore size distributions, obtained in the range of the microporosity, for two pitch-based microporous activated carbon fibers are calculated from the local excess adsorption isotherms obtained via the GCMC simulation. The current systematic study of supercritical methane adsorption both on an open graphite surface and in slitlike micropores performed by the GCMC summarizes recent investigations performed at slightly different temperatures and usually a lower pressure range by advanced methods based on the statistical thermodynamics.

History

Journal

Langmuir

Volume

21

Issue

12

Start page

5639

End page

5646

Total pages

8

Publisher

American Chemical Society

Place published

United States

Language

English

Copyright

© 2005 American Chemical Society

Former Identifier

2006014687

Esploro creation date

2020-06-22

Fedora creation date

2013-02-25