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Conference paper · Journal article

Impact of Reduction Parameters on the Initial Performance and Stability of Ni/(Sc)YSZ Cermet Anodes for SOFCs

From

Department of Energy Conversion and Storage, Technical University of Denmark1

Fundamental Electrochemistry, Department of Energy Conversion and Storage, Technical University of Denmark2

In-situ reduction of Ni cermet anodes produces the porosity and influences the microstructure, performance and stability of the anodes. The impact on initial performance, stability and microstructure of two different reduction procedures currently in use at DTU Energy Conversion with reduction temperatures of 850 °C and 1000 °C was evaluated for tape-cast, thin electrolyte, Nickel/8 mol% Yttria-Stabilized Zirconia (Ni/8YSZ) or (Ni/10Sc1YSZ) symmetric cells.

High temperature activation produced the lower Ohmic and polarization resistances related to Triple Phase Boundary (TPB) charge transfer processes for Ni/10Sc1YSZ cells. The Ni/8YSZ cells behaved oppositely with respect to reduction temperature. A hypothesis is proposed relating performance to variations in Ni microstructure, Ni/ceramic contacting and extent of TPB resulting from differences in reduction parameters.

Further, the performance stability under high steam conditions was evaluated, and very stable performances and microstructures of the anode layers were observed.

Language: English
Year: 2012
Pages: 363-375
Proceedings: 221st ECS Meeting
ISSN: 19385862 and 19386737
Types: Conference paper and Journal article
DOI: 10.1149/1.3701328
ORCIDs: Ramos, Tania and Mogensen, Mogens Bjerg

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