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Electrochemical Characterization of Nickel/Gadolinia Doped Ceria Fuel Electrodes under H2/H2O/CO/CO2-Atmospheres

Authors :
Esau, D.
Grosselindemann, C.
Sckuhr, S. P.
Kullmann, F.
Lindner, A.
Liang, Z.
Fuchs, F. M.
Weber, A.
Source :
Journal of the Electrochemical Society; May 2024, Vol. 171 Issue: 5 p054522-054522, 1p
Publication Year :
2024

Abstract

Modelling of the co-electrolysis process requires understanding of the underlying reaction pathways under H2/H2O/CO/CO2-atmospheres. These include the electrochemical steam reduction/hydrogen oxidation, the electrochemical CO2reduction/CO oxidation and their coupling via the catalytic (reverse) water gas shift reaction ((R)WGS). The assumption of a very fast RWGS and therefore neglectable electrochemical CO2conversion is commonly used to model the co-electrolysis process. In contrast, previous studies on Ni/GDC fuel electrodes suggest that the electrochemical conversion of CO/CO2can be present in H2/H2O/CO/CO2-atmospheres. To deconvolute surface-related and non-surface-related processes in the impedance response we present results from a complex variation of operating parameters for process identification by the use of electrochemical impedance spectroscopy and the subsequent impedance analysis by the distribution of relaxation times. A physically meaningful equivalent circuit model, based on a single channel transmission line, is then derived. The model enables quantification of the surface reaction resistance under varied C/H-ratios. From a kinetic analysis it is shown that the electrochemical H2/H2O conversion is dominant for yCO+yCO2≤50% and electrochemical CO/CO2-conversion onsets from yCO+yCO2≥ 60%.

Details

Language :
English
ISSN :
00134651 and 19457111
Volume :
171
Issue :
5
Database :
Supplemental Index
Journal :
Journal of the Electrochemical Society
Publication Type :
Periodical
Accession number :
ejs66506201
Full Text :
https://doi.org/10.1149/1945-7111/ad4c10