Modified parabolic profile approximation of intraparticle concentration for catalytic chemical reaction and adsorption.
Author:
Affiliation:
1. Department of Applied Chemistry, Kumamoto University
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
http://www.jstage.jst.go.jp/article/jcej/24/4/24_4_538/_pdf
Reference7 articles.
1. Extended linear driving-force approximation for intraparticle diffusion rate including short times
2. 2) Crank, J.: “The Mathematics of Diffusion,” p. 91, Clarendon Press, Oxford, England (1975).
3. Validity of the parabolic profile assumption in adsorption studies
4. A new simplified model for adsorption in a single particle
5. 5) Glueckauf, E.: Trans. Faraday Soc., 51, 1540 (1955).
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1. Nonlinear Driving Force Approximations of Intraparticle Mass Transfer in Adsorption Processes: The Effect of Pellet Shape;Developments in Chemical Engineering and Mineral Processing;2008-05-15
2. Approximations for Intraparticle Mass Diffusion/Convection Models: A Review;Developments in Chemical Engineering and Mineral Processing;2008-05-15
3. Why does the Linear Driving Force model for adsorption kinetics work ?;Adsorption;2000
4. Concentration profile for linear driving force model for diffusion in a particle;AIChE Journal;1999-01
5. Chapter 16. Dynamics of adsorption in heterogeneous solids;Studies in Surface Science and Catalysis;1997
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