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Micro-electro-mechanical systems (MEMS)-based micro-scale direct methanol fuel cell development

机译:基于微机电系统(MEMS)的微型直接甲醇燃料电池开发

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摘要

This paper describes a high-power density, silicon-based micro-scale direct methanol fuel cell (DMFC), under development at Carnegie Mellon. Major issues in the DMFC design include the water management and energy-efficient micro fluidic sub-systems. The air flow and the methanol circulation are both at a natural draft, while a passive liquid-gas separator removes CO_2 from the methanol chamber. An effective approach for maximizing the DMFC energy density, pumping the excess water back to the anode, is illustrated. The proposed DMFC contains several unique features: a silicon wafer with arrays of etched holes selectively coated with a non-wetting agent for collecting water at the cathode; a silicon membrane micro pump for pumping the collected water back to the anode; and a passive liquid-gas separator for CO_2 removal. All of these silicon-based components are fabricated using micro-electro-mechanical systems (MEMS)-based processes on the same silicon wafer, so that interconnections are eliminated, and integration efforts as well as post-fabrication costs are both minimized. The resulting fuel cell has an overall size of one cubic inch, produces a net output of 10 mW, and has an energy density three to five times higher than that of current lithium-ion batteries.
机译:本文介绍了卡耐基梅隆大学正在开发的高功率密度,硅基微型直接甲醇燃料电池(DMFC)。 DMFC设计中的主要问题包括水管理和节能的微流体子系统。空气流和甲醇循环均处于自然通风状态,而被动液气分离器则从甲醇室中去除CO_2。说明了一种最大化DMFC能量密度,将多余的水泵回阳极的有效方法。所提出的DMFC具有几个独特的特征:硅晶片上有一系列刻蚀孔,这些刻蚀孔有选择地涂有一层不润湿剂以在阴极收集水;硅膜微泵,用于将收集的水泵回阳极。以及用于去除CO_2的被动液气分离器。所有这些基于硅的组件都是在同一硅晶片上使用基于微机电系统(MEMS)的工艺制造的,因此消除了互连,并将集成工作以及制造后的成本均降至最低。最终的燃料电池总尺寸为1立方英寸,净输出功率为10 mW,其能量密度是当前锂离子电池的三到五倍。

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