A Model for Non-Equimolar Binary Gas Diffusion through Pores in the Region of Molecular Diffusion
Author:
Affiliation:
1. Department of Chemical Engineering, Kagoshima University
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
https://www.jstage.jst.go.jp/article/kakoronbunshu/43/4/43_17wh007/_pdf
Reference47 articles.
1. Asaeda, M., J. Watanabe and M. Kitamoto; “Effect of Total Pressure Gradient on Unsteady-State Diffusion Rates of Gases in Porous Media,” J. Chem. Eng. Japan, 14, 129–135 (1981)
2. Bao, C., Z. Jiang and X. Zhang; “Modeling Mass Transfer in Solid Oxide Fuel Cell Anode: I. Comparison between Fickian, Stefan–Maxwell and Dusty-Gas Models,” J. Power Sources, 310, 32–40 (2016)
3. Bertei, A. and C. Nicolella; “Common Inconsistencies in Modeling Gas Transport in Porous Electrodes: The Dusty-Gas Model and the Fick Law,” J. Power Sources, 279, 133–137 (2015)
4. Boon, J., J. A. Z. Pieterse, J. W. Dijkstra and M. van Sint Annaland; “Modelling and Systematic Experimental Investigation of Mass Transfer in Supported Palladium-Based Membrane Separators,” Int. J. Greenh. Gas Control, 11, S122–S129 (2012)
5. Boudreau, B. P.; “The Diffusive Tortuosity of Fine-Grained Unlithified Sediments,” Geochim. Cosmochim. Acta, 60, 3139–3142 (1996)
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