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The Impact of Chemical-Mechanical Ex Situ Aging on PFSA Membranes for Fuel Cells

Authors :
Robert, Mylène
El Kaddouri, Assma
Perrin, Jean-Christophe
Mozet, Kévin
Dillet, Jérôme
Morel, Jean-Yves
Lottin, Olivier
Laboratoire Énergies et Mécanique Théorique et Appliquée (LEMTA )
Université de Lorraine (UL)-Centre National de la Recherche Scientifique (CNRS)
Source :
Membranes, Membranes, MDPI, 2021, ⟨10.3390/membranes11050366⟩, Membranes, Vol 11, Iss 366, p 366 (2021)
Publication Year :
2021
Publisher :
HAL CCSD, 2021.

Abstract

A proton-exchange membrane fuel cell (PEMFC) constitutes today one of the preferred technologies to promote hydrogen-based alternative energies. However, the large-scale deployment of PEMFCs is still hampered by insufficient durability and reliability. In particular, the degradation of the polyelectrolyte membrane, caused by harsh mechanical and chemical stresses experienced during fuel cell operation, has been identified as one of the main factors restricting the PEMFC lifetime. An innovative chemical-mechanical ex situ aging device was developed to simultaneously expose the membrane to mechanical fatigue and an oxidizing environment (i.e., free radicals) in order to reproduce conditions close to those encountered in fuel cell systems. A cyclic compressive stress of 5 or 10 MPa was applied during several hours while a degrading solution (H2O2 or a Fenton solution) was circulated in contact with the membrane. The results demonstrated that both composite Nafion™ XL and non-reinforced Nafion™ NR211 membranes are significantly degraded by the conjoint mechanical and chemical stress exposure. The fluoride emission rate (FER) was generally slightly lower with XL than with NR211, which could be attributed to the degradation mitigation strategies developed for composite XL, except when the pressure level or the aging duration were increased, suggesting a limitation of the improved durability of XL.

Details

Language :
English
ISSN :
20770375
Database :
OpenAIRE
Journal :
Membranes, Membranes, MDPI, 2021, ⟨10.3390/membranes11050366⟩, Membranes, Vol 11, Iss 366, p 366 (2021)
Accession number :
edsair.pmid.dedup....0ba58199de35034653483ef73da0c307
Full Text :
https://doi.org/10.3390/membranes11050366⟩