Communication—Modeling Polymer-Electrolyte Fuel-Cell Agglomerates with Double-Trap Kinetics
| Date Published |
04/2017
|
|---|---|
| Publication Type | Journal Article
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| Authors | |
|---|---|
| DOI |
10.1149/2.0111711jes
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| Abstract |
A new semi-analytical agglomerate model is presented for polymer-electrolyte fuel-cell cathodes. The model uses double-trap kinetics for the oxygen-reduction reaction, which can capture the observed potential-dependent coverage and Tafel-slope changes. An iterative semi-analytical approach is used to obtain reaction rate constants from the double-trap kinetics, oxygen concentration at the agglomerate surface, and overall agglomerate reaction rate. The analytical method can predict reaction rates within 2% of the numerically simulated values for a wide range of oxygen concentrations, overpotentials, and agglomerate sizes, while saving simulation time compared to a fully numerical approach. |
| Journal |
Journal of The Electrochemical Society
|
| Volume |
164
|
| Year of Publication |
2017
|
| Issue |
11
|
| Pagination |
E3102 - E3104
|
| ISSN Number |
0013-4651
|
| Short Title |
J. Electrochem. Soc.
|
| Refereed Designation |
Refereed
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| Keywords | |
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