Exact(60)
importance of cross-term diffusivity effects, and effect of restrictive diffusion effects on main-term diffusivities.
Diffusion effects were also taken into account.
A methodology to incorporate pore diffusion effects is also illustrated.
Diffusion effects due to the capillarity forces dominate in this case.
Isotropic increased nanoparticle mobility is manifested as enhanced Brownian motion and diffusion effects.
Kinetic runs were carried out in the region free of inter-particle diffusion effects.
The two approaches have been studied in terms of network and diffusion effects.
The criteria in [21, 22] are independent on the measure of the space and diffusion effects.
In comparison with previous literature, diffusion effects are taken into account in our models.
The diffusion effects are shown to be fairly significant.
It is assumed that the carbonation reaction is kinetics controlled, neglecting the product layer diffusion effects.
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