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LINEAR DRIVING-FORCE APPROXIMATION FOR ISOTHERMAL NON-ISOBARIC DIFFUSION/CONVECTION WITH BINARY LANGMUIR ADSORPTION

Title
LINEAR DRIVING-FORCE APPROXIMATION FOR ISOTHERMAL NON-ISOBARIC DIFFUSION/CONVECTION WITH BINARY LANGMUIR ADSORPTION
Type
Article in International Scientific Journal
Year
1995
Authors
Adélio Mendes
(Author)
FEUP
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Carlos Costa
(Author)
FEUP
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Alírio Rodrigues
(Author)
FEUP
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Journal
Vol. 9
Pages: 259-270
ISSN: 0950-4214
Publisher: Pergamon Press Ltd.
Indexing
Publicação em ISI Web of Science ISI Web of Science
COMPENDEX
Scientific classification
FOS: Engineering and technology > Chemical engineering
CORDIS: Physical sciences > Chemistry > Physical chemistry > Surface chemistry ; Technological sciences > Technology > Biotecnology > Downstream processing
Other information
Authenticus ID: P-001-FX4
Abstract (EN): This paper presents several reduced models for the intraparticle diffusion/convection mechanisms in spherical homoporous particles under isothermal conditions. These semiempirical linear driving force approximations were developed for the cyclic steady state that is attained when a cyclic concentration and/or total pressure perturbation is imposed at the particle surface. The models are applicable to linear systems or those obeying bicomponent Langmuir isotherms. The linear driving force approximations have two or three parameters for each component and are presented for the following cases: Knudsen diffusion, molecular diffusion, molecular plus Knudsen diffusion in series, viscous flow, and also for both diffusion mechanisms in series, in parallel with the convective flow, as in the dusty gas model. Comparison between the results obtained with these approximations and with the complete models shows that on average the relative quadratic error is approximate to 10% for non-smooth and 5% for smoother perturbations.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 12
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