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Design of leakage gas induction channels for reliable planar-type solid oxide fuel cell stacks

Authors
Yoon, HeesungJang, InyoungKim, ChanhoKim, SungminPaik, Ungyu
Issue Date
Jul-2017
Publisher
Electrochemical Society Inc.
Citation
ECS Transactions, v.78, no.1, pp.2265 - 2269
Indexed
SCOPUS
Journal Title
ECS Transactions
Volume
78
Number
1
Start Page
2265
End Page
2269
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/19593
DOI
10.1149/07801.2265ecst
ISSN
1938-5862
Abstract
The leakage of gas in a planar solid oxide fuel cell (SOFC) stack is one of the important factors associated with stack degradation. When the fuel leaks to the air electrode, the catalytic property of the cathode deteriorates. Further, when air leaks to the anode comprised of Ni metal, the electrolyte thin film is peeled from the anode surface as result of the re-oxidation of Ni. Therefore, one of the ways to prevent these deterioration characteristics of the SOFC stack is to design a sealing method that can prevent gas leakage. In this study, we have developed a stack with specially designed channels which incorporates sealing gaskets that release leaked gas to outside, thereby preventing it from flowing into the fuel and air electrodes and ensuring the stability of the SOFC stack. The stack is designed to function with 10×10 cm2 size cells, and to undergo frequent thermal cycles rising from room temperature to operation temperature and then back to room temperature.
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