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수전해,연료전지 가역셀에서 이중 가스 확산층의 효과
Effect of Double Porous Layer on a Polymer Electrolyte Unitized Regenerative Fuel Cell
황철민 ( Chul Min Hwang ) , 박대흠 ( Dae Heum Park ) , 정영관 ( Young Guan Jung ) , 김경훈 ( Kyung Hoon Kim ) , 김종수 ( Jong Soo Kim )
UCI I410-ECN-0102-2014-500-001828417
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TUnitized reversible fuel cells (URFC) combine the functionality of a fuel cell and electrolyzer in one unitized device. For a URFC with proton exchange membrane, a titanium (Ti)-felt is applied to the gas diffusion layer (GDL) substrate at the oxygen electrode, and additionally titanium (Ti)-powders and TiN-powders are loaded in the GDL substrate as a micro porous layer (MPL). Double porous layer with TiN MPL was not acceptable for the URFC because both of fuel cell performance and electrolysis performance are degraded. The double porous layer with Ti-powder loading in the Ti-felt substrate influence rearly for the electrolysis performance. In contrast, the change of pore-size distribution brings a significant improvement of fuel cell performance under fully humidification conditions. This fact indicates that the hydrophobic meso-pores in the GDL play an important role for mass transport.

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