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Passive direct methanol fuel cells fed with methanol vapor

机译:被动甲醇直接燃料电池充入甲醇蒸气

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摘要

A vapor fed passive direct methanol fuel cell (DMFC) is proposed to achieve a high energy density by using pure methanol for mobile applications. Vapor is provided from a methanol reservoir to the membrane electrode assembly (MEA) through a vaporizer, barrier and buffer layer. With a composite membrane of lower methanol cross-over and diffusion layers of hydrophilic nanomaterials, the humidity of the MEA was enhanced by water back diffusion from the cathode to the anode through the membrane in these passive DMFCs. The humidity in the MEA due to water back diffusion results in the supply of water for an anodic electrochemical reaction with a low membrane resistance. The vapor fed passive DMFC with humidified MEA maintained 20-25 mW cm~(-2) power density for 360 h and performed with a 70 percent higher fuel efficiency and 1.5 times higher energy density when compared with a liquid fed passive DMFC.
机译:提出了一种采用蒸气供给的被动式直接甲醇燃料电池(DMFC),以通过在移动应用中使用纯甲醇来实现高能量密度。蒸汽通过蒸发器,阻挡层和缓冲层从甲醇储存器提供给膜电极组件(MEA)。在较低的甲醇穿透率和亲水性纳米材料的扩散层的复合膜的作用下,通过这些被动DMFC中通过膜从阴极向阳极的水反扩散,可以提高MEA的湿度。由于水的反向扩散,MEA中的湿度导致以低膜电阻为阳极电化学反应提供水。与加液的无源DMFC相比,采用加湿MEA的蒸汽进料的无源DMFC在20h内保持20-25 mW cm〜(-2)的功率密度,并且燃料效率高70%,能量密度高1.5倍。

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