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DEVELOPMENT OF FOAMED PES-ZEOLITE MIXED MATRIX MEMBRANES FOR PEM FUEL CELL HUMIDIFICATION

机译:发泡PES-沸石混合基质膜的开发PEM燃料电池湿润

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Polymer electrolyte membrane (PEM) fuel cell efficiency must be improved in order to become cost-competitive with fossil fuel based technologies. Approaches to increasing cost efficiency include raising fuel cell operating temperature, reducing component cost and properly controlling fuel cell humidification. We sought to fulfill all three requirements by developing a new low-cost, high-temperature humidification membrane material. Currently Nation dominates the membrane humidifier market due to its excellent water transport characteristics, but its high price (~$1000/m~2) and low maximum operating temperature (<90°C) drive up fuel cell cost. We developed a competing PES-zeolite mixed matrix membrane (MMM) with a porous microstructure. Solvent casting was used to form the initial PES-zeolite films, followed by solid state foaming to alter the film morphology and create a porous structure. The effects of both zeolite weight loading and foaming duration on membrane permeability were investigated. Membrane measurement results show both foaming and increased zeolite weight loading enhance membrane water permeability close to levels seen in Nation. Meanwhile, the membranes satisfies the Department of Energy (DOE) crossover gas requirement for humidification membrane materials.
机译:必须改善聚合物电解质膜(PEM)燃料电池效率,以便与化石燃料的技术成本竞争。提高成本效率的方法包括提高燃料电池工作温度,降低成本成本并适当控制燃料电池加湿。我们试图通过开发新的低成本,高温加湿膜材料来实现所有三种要求。目前国家主导了膜加湿器市场由于其优良的水运特性,但其高价格(〜1000美元/毫升)和最大工作温度(<90°C)的最低工作量(<90°C)推动燃料电池成本。我们开发了具有多孔微观结构的竞争性PES-沸石混合基质膜(MMM)。溶剂铸件用于形成初始PES-沸石膜,然后是固态发泡以改变膜形态并产生多孔结构。研究了沸石重量负荷和发泡持续时间对膜渗透性的影响。膜测量结果表明发泡和增加的沸石重量负荷增强膜水渗透性接近全国所见的水平。同时,膜满足加湿膜材料的能量(DOE)交叉气体需求。

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