DocumentCode :
2751789
Title :
Effect of cathode gas flow patterns on performance of micro direct methanol fuel cell
Author :
Zhang, Yufeng ; He, Hong ; Fan, Qi ; Zhang, Bo ; Liu, Xiaowei ; Tian, Li ; Tan, Kai
Author_Institution :
Dept. of Microelectron., Harbin Inst. of Technol., Harbin, China
fYear :
2010
fDate :
July 28 2010-Aug. 1 2010
Firstpage :
326
Lastpage :
329
Abstract :
In this paper, an active oxygen-supplying micro direct methanol fuel cell (μDMFC) and an air-breathing μDMFC were designed, fabricated and tested. Stainless steel plates with the thickness of 200μm were chosen to fabricate the current collectors by the micro stamping. The 5-layered membrane electrode assembly (MEA) was fabricated by the catalyst coated membrane (CCM) method. The polymethyl methacrylate (PMMA) plates were manufactured into fixer plates with the heat-resistant treatment. Silicon rubber gaskets were employed to keep the cells from liquid leakage, which relieves the fixing pressure during clamping and prevents short circuit. The effects of different methanol concentrations and supply velocities on the performance of both μDMFCs were studied. The active oxygen-supplying μDMFC exhibited a maximum output power density of 65.66mW/cm2 at 40°C, while the air-breathing μDMFC provided a maximum output power density of 27.11mW/cm2 at 20°C. And experiments were carried out to compare the effects of the two cathode gas flow patterns on cell performance. The results revealed that the active oxygen-supplying μDMFC exhibits higher performance than the air-breathing μDMFC at the cost of more complex system structure and parasitic power consumption.
Keywords :
cathodes; direct methanol fuel cells; microfabrication; stainless steel; 5-layered membrane electrode assembly; PMMA plates; active oxygen-supplying μDMFC; active oxygen-supplying microdirect methanol fuel cell; air-breathing μDMFC; catalyst coated membrane method; cathode gas flow patterns; clamping; complex system structure; current collectors; fixer plates; fixing pressure; heat-resistant treatment; liquid leakage; methanol concentrations; microstamping; parasitic power consumption; polymethyl methacrylate plates; silicon rubber gaskets; stainless steel plates; supply velocities; temperature 20 C; temperature 40 C; Anodes; Cathodes; Fluid flow; Fuel cells; Methanol; Power generation; Steel; µDMFC; active oxygen-supplying; air-breathing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Laser Physics and Laser Technologies (RCSLPLT) and 2010 Academic Symposium on Optoelectronics Technology (ASOT), 2010 10th Russian-Chinese Symposium on
Conference_Location :
Harbin
Print_ISBN :
978-1-4244-5511-9
Type :
conf
DOI :
10.1109/RCSLPLT.2010.5615302
Filename :
5615302
Link To Document :
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