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首页> 外文期刊>Journal of Chemical Engineering of Japan >Multi-layered Microreactor System with Methanol Reformer for Small PEMFC
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Multi-layered Microreactor System with Methanol Reformer for Small PEMFC

机译:小型PEMFC用甲醇重整器的多层微反应器系统

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References(14) Cited-By(8) To supply H2 for a small proton exchange membrane fuel cell (PEMFC) as a power source for portable electronic devices, a multi-layered microreactor system with a methanol reformer was developed. The microreactor consists of four units (a methanol reformer with a catalytic combustor, a CO remover, and two vaporizers) and was designed using thermal simulations to establish an appropriate temperature distribution for each reaction. The microreactor was constructed from thirteen microchanneled glass plates stacked with anodic bonding and placed in a vacuum package for thermal isolation. An appropriate catalyst for each reaction was deposited on the microchannel of each reactor. When the microreactor was heated by applying voltage to a thin film heater attached to one side of the reformer, the temperature distribution observed for each unit approximated the simulated results. Finally, methanol reforming was achieved in the microreactor using heat supplied from the internal catalytic combustor. The reforming temperature of the microreactor could be maintained at 280°C without a supply of electrical power. A hydrogen production rate sufficient to generate 2.5 W of electrical power was obtained.
机译:参考文献(14)引用(8)为了为小型质子交换膜燃料电池(PEMFC)提供H2作为便携式电子设备的电源,开发了带有甲醇重整器的多层微反应器系统。微型反应器由四个单元(带有催化燃烧器的甲醇重整器,一氧化碳去除器和两个蒸发器)组成,并使用热模拟进行设计,以为每个反应建立合适的温度分布。微反应器由十三块微通道玻璃板与阳极键合而成,并置于真空包装中进行热隔离。每个反应的合适催化剂沉积在每个反应器的微通道上。当通过向连接到重整器一侧的薄膜加热器施加电压来加热微反应器时,观察到的每个单元的温度分布接近模拟结果。最后,使用内部催化燃烧器提供的热量在微反应器中实现了甲醇重整。微反应器的重整温度可以保持在280℃而无需供电。获得足以产生2.5W电功率的氢气产生速率。

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