Title of article :
Simulation of methane permeability in carbon slit pores
Author/Authors :
Young-Il Lim، نويسنده , , Suresh K. Bhatia، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Pages :
10
From page :
319
To page :
328
Abstract :
Using a one-site spherical CH4 molecular model, we predict permeabilities in carbon slit pores of width 0.65–0.75 nm, based on adsorption isotherms obtained from grand canonical Monte Carlo (GCMC) simulation and diffusivities from equilibrium molecular dynamics (EMD). In the range of temperature of 298–318 K and pressure of 0.01–80 bar, the permeability within the slit pore is more strongly influenced by adsorption isotherms than by diffusion. It is found that the permeabilities predicted by the slit pore model far exceed those experimentally measured in practical membrane systems, consistent with our recent observations based on simulations of carbon dioxide permeability in slit pores. These results suggest that the pore entrance resistance (or pore mouth barrier), not considered in simulations of transport in semi-infinite slit pores, may be a dominating factor in nano-porous membrane transport.
Keywords :
Molecular simulation , Pore mouth resistance , Methane (CH4) , Carbon slit pore , Permeability
Journal title :
Journal of Membrane Science
Serial Year :
2011
Journal title :
Journal of Membrane Science
Record number :
1356136
Link To Document :
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