A novel design for a flow field configuration, of a direct methanol fuel cell |
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Authors: | Shou-Shing Hsieh Ho-Chieh Wu Bing-Shyan Her |
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Affiliation: | Department of Mechanical and Electro Mechanical Engineering, National Sun Yat-Sen University, Kaohsiung 80424, Taiwan, ROC |
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Abstract: | We proposed and tested a new and novel arrangement for a direct methanol fuel cell consisting of one inlet for a methanol solution and four outlets for oxidant gas (air), in both the anode and cathode flow fields. It utilizes different operating temperatures of 40 °C and 60 °C, and different methanol solution flow rates of 5 ml min−1, 10 ml min−1, and 20 ml min−1. Test results indicate a significant reduction in produced CO2 gas in the anode flow channels and product water in the cathode flow channels; consequently, cell performance can be greatly improved. Furthermore, methanol crossover can also be avoided and reduced. |
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Keywords: | Flow field Crossover Direct methanol fuel cell Carbon dioxide gas bubble |
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