Kinetic Monte Carlo simulations of transport diffusivities of binary mixtures in zeolites

Citation
D. Paschek et R. Krishna, Kinetic Monte Carlo simulations of transport diffusivities of binary mixtures in zeolites, PHYS CHEM P, 3(15), 2001, pp. 3185-3191
Citations number
27
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
PHYSICAL CHEMISTRY CHEMICAL PHYSICS
ISSN journal
14639076 → ACNP
Volume
3
Issue
15
Year of publication
2001
Pages
3185 - 3191
Database
ISI
SICI code
1463-9076(2001)3:15<3185:KMCSOT>2.0.ZU;2-F
Abstract
We develop the Maxwell-Stefan formulation for diffusion of binary mixtures in zeolites, and show that the mixture transport behaviour can be predicted on the basis of information on the pure component jump diffusivities at ze ro loading. The interaction between the diffusing, sorbed, species is taken into account by the introduction of an interchange coefficient D-ij, which is estimated using a logarithmic interpolation formula. To verify the deve loped Maxwell-Stefan formulation, we have carried out kinetic Monte Carlo ( KMC) simulations to calculate the transport diffusivities for binary mixtur es in silicalite and also on a square lattice. The KMC simulations confirm that the binary mixture diffusion can be predicted with very good accuracy. The interchange coefficient D-ij encapsulates the correlations in the mole cular jumps.