JOURNAL ARTICLE

Diffusion-reaction-conduction processes in porous electrodes: the electrolyte wedge problem

Joseph D. Fehribach

Year: 2001 Journal:   European Journal of Applied Mathematics Vol: 12 (1)Pages: 77-96   Publisher: Cambridge University Press

Abstract

This work studies mathematical issues associated with steady-state modelling of diffusion- reaction-conduction processes in an electrolyte wedge (meniscus corner) of a current-producing porous electrode. The discussion is applicable to various electrodes where the rate-determining reaction occurs at the electrolyte-solid interface; molten carbonate fuel cell cathodes are used as a specific example. New modelling in terms of component potentials (linear combinations of electrochemical potentials) is shown to be consistent with tradition concentration modelling. The current density is proved to be finite, and asymptotic expressions for both current density and total current are derived for suffciently small contact angles. Finally, numerical and asymptotic examples are presented to illustrate the strengths and weaknesses of these expressions.

Keywords:
Electrolyte Thermal conduction Electrode Mechanics Materials science Current density Diffusion Porosity Cathode Wedge (geometry) Current (fluid) Thermodynamics Electrochemistry Work (physics) Chemistry Physics Geometry Composite material Mathematics Physical chemistry

Metrics

11
Cited By
0.73
FWCI (Field Weighted Citation Impact)
20
Refs
0.77
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Fuel Cells and Related Materials
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Heat and Mass Transfer in Porous Media
Physical Sciences →  Engineering →  Computational Mechanics
Advancements in Solid Oxide Fuel Cells
Physical Sciences →  Materials Science →  Materials Chemistry

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