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Air-breathing microfluidic fuel cell with fuel reservoir

机译:带有储气罐的空气呼吸微流燃料电池

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摘要

This paper describes the design and characterization of an air-breathing microfluidic fuel cell with a stationary fuel reservoir above the anode replacing the continuous fuel stream. Unlike other air-breathing microfluidic designs, the fuel is not in direct contact with electrolyte stream allowing the use of high fuel concentration. In addition, Ohmic losses are minimal because of the low anode-to-cathode spacing. Since the fuel passes through the catalyst layer of the anode, the conventional depletion boundary layer does not form. Improved mass transport compared to previous microfluidic designs is obtained because of a supply of a uniform fuel concentration over the anode and efficient bubble removal from the anode active sites. For practical applications, the fuel reservoir can be replaced by a pressurized fuel cartridge. The pressure is optimized according to the fuel concentration and the power density. This simple design of the fuel cell provides a low-cost but functional platform for practical applications.
机译:本文介绍了一种空气呼吸微流燃料电池的设计和特性,其阳极上方有一个固定的燃料储存器来代替连续的燃料流。与其他空气呼吸微流体设计不同,燃料不与电解质流直接接触,从而允许使用高燃料浓度。另外,由于阳极到阴极的间距小,欧姆损耗最小。由于燃料穿过阳极的催化剂层,因此不会形成常规的耗尽边界层。与先前的微流体设计相比,由于在阳极上提供了均匀的燃料浓度并从阳极活性位点有效去除了气泡,因此获得了改善的质量传输。对于实际应用,可以用加压的燃油盒代替燃油箱。根据燃料浓度和功率密度优化压力。燃料电池的这种简单设计为实际应用提供了一个低成本但功能强大的平台。

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