A fundamental approach to molecular flow in pore spaces
Author:
Publisher
Wiley
Subject
General Chemical Engineering
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1002/bbpc.19750790919/fullpdf
Reference9 articles.
1. Influence of adsorption forces on the flow of dilute gases through porous media
2. Surface diffusion in microporous media
3. Diffusion of helium through a microporous carbon membrane
4. Temperature Dependence of the Knudsen Permeability
5. Capillary Models for Porous Media: III. Two-phase flow in a three-dimensional network with Gaussian radius distribution.
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1. Pore network simulation for diffusion through a porous membrane: A comparison between Knudsen and Oscillator models;The Canadian Journal of Chemical Engineering;2013-12-27
2. May the Knudsen equation be legitimately, or at least usefully, applied to dilute adsorbable gas flow in mesoporous media?;Chemical Engineering Science;2012-01
3. Some pitfalls in the use of the Knudsen equation in modelling diffusion in nanoporous materials;Chemical Engineering Science;2011-02
4. Molecular transport in nanopores: a theoretical perspective;Physical Chemistry Chemical Physics;2011
5. Anomalous transport in molecularly confined spaces;The Journal of Chemical Physics;2007-09-28
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