Title of article
Truncated pore network model for the methane and hydrogen adsorption in disordered nanoporous carbons
Author/Authors
Ramيrez Vélez، نويسنده , , Alejandro، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
6
From page
1016
To page
1021
Abstract
A useful computational model is described for representing the nanoporous structure in real carbons. The model gathers geometric and topological (e.g. pore connectivity and deadend pores) characteristics and it is used to evaluate the effect that porosity (ɛ) and pore size (H) have on the adsorption behavior of methane and hydrogen (obtained by Grand Canonical Monte Carlo Simulation) quantified in terms of the excess density (ρ) and the gravimetric storage capacity (wt.%). In general higher adsorptions are observed compared to the traditional pore models. An increase in porosity or pore size originates a decrease in ρ. 3.1 wt.% is the maximum amount of H2 stored in the material ε = 0.40 , H = 4.89 σ ff at 77 K, which is in reasonably good agreement with experimental data. This quantity is lower as the porosity decreases and the pore size increases. The results of this work support some experimental evidences that suggest a linear relation between the hydrogen stored in nanoporous carbons and specific surface area.
Keywords
Adsorption , Nanoporous carbons , Pore network model , Storage
Journal title
Computational Materials Science
Serial Year
2011
Journal title
Computational Materials Science
Record number
1688461
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