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Development of planar air breathing direct methanol fuel cell stacks

机译:平面呼吸直接甲醇燃料电池堆的开发

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In this paper, design criteria and development techniques for planar air breathing direct methanol fuel cell stacks are described in detail. The fuel cell design in this study incorporates a window-frame structure that provides a large open area for more efficient mass transfer and is modular, making it possible to fabricate components separately. The membrane electrode assembly and gas diffusion layers are laminated together to reduce contact resistance, which eliminates the need for heavy hardware. The composite current collector is low cost, has high electrical conductivity and corrosion resistance. In the interest of quick and cost-efficient prototyping, the fabrication techniques were first developed on a single cell with an active area of 1.0 cm2. Larger single cells with active areas of 4.5 and 9.0 cm~2 were fabricated using techniques based on those developed for the smaller single cell. Two four-cell stacks, one with a total active area of 18.0 cm~2 and the other with 36.0 cm~2, were fabricated by inter-connecting four identical cells in series. These four-cell stacks are suitable for portable passive power source applications. The performance analysis of single cells as well as stacks is presented. Peak power outputs of 519.0 and 870.0 mW were achieved in the stacks with active areas of 18.0 and 36.0 cm~2, respectively. The effects of methanol concentration and fuel cell self-heating on the fuel cell performance are emphasized.
机译:在本文中,详细介绍了平面空气呼吸直接甲醇燃料电池堆的设计标准和开发技术。这项研究中的燃料电池设计采用了窗框结构,该结构提供了较大的开放区域以实现更有效的质量传递,并且是模块化的,因此可以分别制造组件。膜电极组件和气体扩散层被层压在一起以减小接触电阻,从而消除了对重型硬件的需求。该复合集电器成本低廉,具有较高的导电性和耐腐蚀性。为了快速,经济高效地进行原型制作,首先在有源面积为1.0 cm2的单个电池上开发了制造技术。使用基于为较小的单电池开发的技术制造具有4.5和9.0 cm〜2的有效面积的较大的单电池。通过串联连接四个相同的电池,制造了两个四电池堆,一个总有效面积为18.0 cm〜2,另一个为36.0 cm〜2。这些四节电池堆叠适用于便携式无源电源应用。提出了单电池以及电池堆的性能分析。在有效面积分别为18.0和36.0 cm〜2的电池堆中,实现了519.0和870.0 mW的峰值功率输出。强调了甲醇浓度和燃料电池自热对燃料电池性能的影响。

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