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Determination of the pore size distribution of micro porous layer in PEMFC using pore forming agents under various drying conditions
Authors:Jeong Hwan Chun  Ki Tae Park  Dong Hyun Jo  Ji Young Lee  Sang Gon Kim  Eun Sook Lee  Jy-Young Jyoung  Sung Hyun Kim
Affiliation:1. Department of Chemical and Biological Engineering, Korea University, 1 Anam-Dong, Seongbuk-Ku, Seoul 136-713, South Korea;2. Energy Research Center, HyupJin I&C Co., LTD, 143-1 Gwelang-Ri, Jungnam-Myun, Hwasung-Si, Kyunggi-Do, South Korea
Abstract:In this paper, the effect of the pore size distribution of a micro-porous layer (MPL) on the performance of polymer electrolyte membrane fuel cells (PEMFC) was investigated using self-made gas diffusion layers (GDLs) with different MPLs for which the pore size distribution was modified using pore forming agents under different drying conditions. When MPL dried at high temperature, more macro pores, approximately 1,000–20,000 nm in diameter, and less micro pores, below 100 nm, were observed relative to when MPL was dried at low temperature. Self-made GDLs were characterized by a field-emission scanning electron microscope (FE-SEM), mercury porosimetry and self-made gas permeability measurement equipment. The performance of the single cells was measured under two different humidification conditions. The results demonstrate that the optimum pore size distribution of MPL depended on the cell operating humidification condition. The MPL dried at high temperature performed better than the MPL dried at low temperature under a low humidification condition; however, MPL dried at low temperature performed better under a high humidification condition.
Keywords:Polymer electrolyte membrane fuel cell (PEMFC)  Micro porous layer (MPL)  Pore forming agent  Pore size distribution
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