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MEMS fuel cell system for portable power source: Integration of methanol reformer, PROX, and fuel cell

机译:用于便携式电源的MEMS燃料电池系统:甲醇重整器,PROx和燃料电池的整合

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MEMS fuel cell system was designed and fabricated for a portable power source in the present study. The system consists of a methanol reformer, a partial oxidation (PROX) reactor, and a fuel cell. Methanol reformer is a subsystem to produce hydrogen, consisting of a preheater, vaporizing/reforming channel, and a combustor. All components were fabricated using MEMS fabrication technologies integrated with catalyst coating processes. Performance of the MEMS fuel cell system was measured with the optimal conditions of reformer/PROX. The power density was 220 mW/cm2 when the potential was 0.65 V. The performance was low compared to the result for pure hydrogen because the feed at the fuel cell included undesired CO, CO2, and N2.
机译:MEMS燃料电池系统设计和制造于本研究中的便携式电源。该系统由甲醇重整器,部分氧化(Prox)反应器和燃料电池组成。甲醇重整器是生产氢的子系统,由预热器,汽化/重整通道和燃烧器组成。使用与催化剂涂覆方法集成的MEMS制造技术制造所有组分。使用Reformer / Prox的最佳条件测量MEMS燃料电池系统的性能。当电位为0.65V时,功率密度为220mW / cm 2 。与纯氢的结果相比,性能低,因为燃料电池的饲料包括UNDESEDIAD CO,CO 2 ,和N 2

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