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Passive Direct Methanol Fuel Cell System with Adaptive Fuel Concentration Control based on Liquid Surface Tension

机译:具有基于液体表面张力的自适应燃料浓度控制的被动直接甲醇燃料电池系统

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摘要

The direct methanol fuel cell (DMFC) is considered as a potential power source candidate for portable electronics due to its high power density, efficient and environmental friendly operation. However, the fixed concentration fuel supply in existing DMFC systems relies on either the diluted methanol solution carrying or the active delivery driven by attached pump. Both approaches limit the power density or degrade the overall efficiency of the DMFC system significantly. Such disadvantages become more severe in small-scale DMFCs which require high conversion efficiency and small physical space suitable for portable electronics. In this paper, a passive fuel delivery component based on surface tension driving mechanism was designed and integrated in a laboratory-made prototype to achieve consumption depending fuel concentration control and power-free fuel delivery. The unidirectional methanol-to-water smooth flow is achieved through the capillaries of the Teflon PolyTetraFluoroEthylene (PTFE) membrane based on the difference in their properties of liquid surface tension. The prototype was demonstrated to exhibit a better polarization performance compared to the conventional DMFCs. Its high efficiency and load regulation performance was also proved in contrast with active DMFC fed with constant concentration fuel. The passive fuel delivery effect demonstrated here is believed to be more applicable for the future small scale DMFC development.
机译:直接甲醇燃料电池(DMFC)被认为是一个潜在的动力源的候选为便携式电子由于其高功率密度,高效率和环保的操作。然而,在现有系统的DMFC的固定浓度的燃料供应依赖于任一稀释甲醇溶液载或主动输送由安装泵驱动。这两种方法都限制功率密度或显著降低DMFC系统的整体效率。这样的缺点成为在要求高转换效率和适用于便携式电子设备的小物理空间的小规模的DMFC更加严重。在本文中,基于表面张力驱动机构的被动燃料输送组件的设计和集成在一个实验室制的原型实现取决于燃料浓度控制和无动力的燃料输送量。单向甲醇 - 水顺畅流动通过基于在它们的液体表面张力的性质的差异特氟隆的聚四氟乙烯(PTFE)膜的毛细管来实现。原型被证明表现出相比于常规DMFC的一个更好的偏振性能。其高效率和负载调节性能也证明了在与恒定浓度的燃料供给主动型DMFC的对比度。这里展示的被动燃油输送效果被认为是更适用于未来的小规模DMFC发展。

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