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A preliminary study of a miniature planar 6-cell PEMFC stack combined with a small hydrogen storage canister
Authors:Xigui Zhang  Dan Zheng  Tao Wang  Cong Chen  Jianyu Cao  Jian Yan  Wenming Wang  Juanying Liu  Haohan Liu  Juan Tian  Xinxin Li  Hui Yang  Baojia Xia
Affiliation:1. Laboratory of Nano Sciences and Technologies, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China;2. Shanghai Institute of 811, Shanghai 200381, China;3. Shanghai Institute of Technology, Shanghai 200233, China;4. Chemical Engineering College, Harbin Engineering University, Harbin 150001, China
Abstract:The fabrication and performance evaluation of a miniature 6-cell PEMFC stack based on Micro-Electronic-Mechanical-System (MEMS) technology is presented in this paper. The stack with a planar configuration consists of 6-cells in serial interconnection by spot welding one cell anode with another cell cathode. Each cell was made by sandwiching a membrane-electrode-assembly (MEA) between two flow field plates fabricated by a classical MEMS wet etching method using silicon wafer as the original material. The plates were made electrically conductive by sputtering a Ti/Pt/Au composite metal layer on their surfaces. The 6-cells lie in the same plane with a fuel buffer/distributor as their support, which was fabricated by the MEMS silicon–glass bonding technology. A small hydrogen storage canister was used as fuel source. Operating on dry H2 at a 40 ml min−1 flow rate and air-breathing conditions at room temperature and atmospheric pressure, the linear polarization experiment gave a measured peak power of 0.9 W at 250 mA cm−2 for the stack and average power density of 104 mW cm−2 for each cell. The results suggested that the stack has reasonable performance benefiting from an even fuel supply. But its performance tended to deteriorate with power increase, which became obvious at 600 mW. This suggests that the stack may need some power assistance, from say supercapacitors to maintain its stability when operated at higher power.
Keywords:Miniature fuel cell   PEMFC stack   Fuel buffer/distributor   Small hydrogen storage canister
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