A prediction model of degradation rate for membrane electrode assemblies in direct methanol fuel cells

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초록

This article proposes a new prediction model to describe the nonlinear performance degradation paths of membrane electrode assemblies (MEAs) in direct methanol fuel cell (DMFC): a bi-exponential model with random coefficients. The bi-exponential model is constructed on a mathematical basis representing Second-order kinetics. Performance variation between MEAs is incorporated by random coefficients in the proposed model. A likelihood ratio test is sequentially executed to select random effects in the nonlinear random-coefficients model. Analysis results indicate that the reliability estimation can be substantially improved by using the nonlinear random-coefficients model to incorporate two heterogeneous degradation characteristics of MEA performance during continuous operation of DMFC. Confidence intervals of failure-time distributions are obtained by the parametric bootstrap method.

키워드

Accelerated degradation testingDirect methanol fuel cell (DMFC)Membrane electrode assembly (MEA)Random-coefficients modelReliabilityPERFORMANCEOXIDATIONLIFETIME
제목
A prediction model of degradation rate for membrane electrode assemblies in direct methanol fuel cells
저자
Bae, Suk JooKim, Seong-JoonUm, SukkeePark, Jun-YoungLee, Jin-HwaCho, Hyejung
DOI
10.1016/j.ijhydene.2009.04.071
발행일
2009-07
유형
Article
저널명
International Journal of Hydrogen Energy
34
14
페이지
5749 ~ 5758