Narvin D. Neehall
Effect of Microporous Layer Ink Homogenisation on the Through-Plane Gas Permeability of PEFC Porous Media
Neehall, Narvin D.; Ismail, Mohammed S.; Hughes, Kevin J.; Pourkashanian, Mohamed
Authors
Dr Mohammed Ismail m.s.ismail@hull.ac.uk
Senior Lecturer - Hydrogen and Fuel Cell Technologies
Kevin J. Hughes
Mohamed Pourkashanian
Abstract
The through-plane gas permeability and morphology of PEFC gas diffusion media (GDM) is investigated for different microporous layer (MPL) ink homogenisation techniques (bath sonication and magnetic stirring) for low- (Vulcan XC-72R) and high (Ketjenblack EC-300J)-surface-area carbon powders. The MPL composition is held constant at 80 wt.% carbon powder and 20 wt.% PTFE for a carbon loading of 1.0 mg cm−2. The MPL ink homogenisation time is held constant at two hours for both techniques and increased by one hour for bath sonication to compare with previous investigations. The results show that the through-plane gas permeability of the GDM is approximately doubled using magnetic stirring when compared with bath sonication for MPLs composed of Vulcan XC-72R, with a negligible change in surface morphology between the structures produced from either homogenisation technique. The variation in through-plane gas permeability is almost negligible for MPLs composed of Ketjenblack EC-300J compared with Vulcan XC-72R; however, MPL surface morphology changes considerably with bath sonication, producing smoother, less cracked surfaces compared to the large cracks produced via magnetic stirring for a large-surface-area carbon powder. An MPL ink sonication time of three hours results in a percentage reduction in through-plane gas permeability from the GDL substrate permeability by ~72% for Ketjenblack EC-300J compared to ~47% for two hours.
Citation
Neehall, N. D., Ismail, M. S., Hughes, K. J., & Pourkashanian, M. (2023). Effect of Microporous Layer Ink Homogenisation on the Through-Plane Gas Permeability of PEFC Porous Media. Energies, 16(16), Article 5944. https://doi.org/10.3390/en16165944
Journal Article Type | Article |
---|---|
Acceptance Date | Aug 4, 2023 |
Online Publication Date | Aug 11, 2023 |
Publication Date | Aug 2, 2023 |
Deposit Date | Aug 14, 2023 |
Publicly Available Date | Aug 16, 2023 |
Journal | Energies |
Electronic ISSN | 1996-1073 |
Publisher | MDPI |
Peer Reviewed | Peer Reviewed |
Volume | 16 |
Issue | 16 |
Article Number | 5944 |
DOI | https://doi.org/10.3390/en16165944 |
Keywords | PEFC; Gas permeability; Gas diffusion layer; Microporous layer; MPL ink homogenisation |
Public URL | https://hull-repository.worktribe.com/output/4360736 |
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Copyright Statement
© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
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