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Air-breathing membraneless laminar flow-based fuel cells: Do they breathe enough oxygen?

机译:空气呼吸的无膜层流式燃料电池:它们是否吸入足够的氧气?

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摘要

Laminar flow-based fuel cell (LFFC) is a relatively new type of fuel cell that does not require the use of proton exchange membrane. While the first-generation LFFC uses dissolved oxygen at the cathode, the second-generation LFFC (2G-LFFC) adopts a more advanced air-breathing design for achieving high power density. The architecture and operational mechanisms of a 2G-LFFC are more complex. In order to gain detailed understanding of the 2G-LFFC, an integrated CFD/electrochemical kinetics modeling study has been conducted to analyze the cell limiting factors and sufficiency of the oxidant supply from air. It is found that under most typical operating conditions, the 2G-LFFC free-breathing mode can supply sufficient oxygen to the electrode reactive surface for cathode half-cell reaction, indicating that the air breathing process is not a limiting factor to the cell performance. However, oxygen starvation will become a major performance limiting factor when the anode is enhanced for higher current density. The results presented in this paper provide useful design guidance for future development of LFFC.
机译:基于层流的燃料电池(LFFC)是一种相对新型的燃料电池,不需要使用质子交换膜。第一代LFFC在阴极使用溶解氧,而第二代LFFC(2G-LFFC)采用更先进的空气呼吸设计以实现高功率密度。 2G-LFFC的体系结构和运行机制更加复杂。为了获得对2G-LFFC的详细了解,已经进行了集成的CFD /电化学动力学建模研究,以分析细胞限制因素和空气中氧化剂的充足性。发现在最典型的操作条件下,2G-LFFC自由呼吸模式可为电极的反应性表面提供足够的氧气,以进行阴极半电池反应,这表明空气呼吸过程不是电池性能的限制因素。但是,当增强阳极以获得更高的电流密度时,缺氧将成为主要的性能限制因素。本文介绍的结果为LFFC的未来发展提供了有用的设计指导。

著录项

  • 来源
    《Applied Energy》 |2013年第4期|400-407|共8页
  • 作者单位

    State-Key Laboratory of Chemical Engineering, School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai 200237, China,Department of Mechanical Engineering, The University of Hong Kong, Hong Kong, China,Ability R&D Energy Research Center, School of Energy and Environment, City University of Hong Kong, Hong Kong, China;

    Department of Mechanical Engineering, The University of Hong Kong, Hong Kong, China;

    Department of Mechanical Engineering, The University of Hong Kong, Hong Kong, China;

    Ability R&D Energy Research Center, School of Energy and Environment, City University of Hong Kong, Hong Kong, China;

    Ability R&D Energy Research Center, School of Energy and Environment, City University of Hong Kong, Hong Kong, China;

    Department of Building & Real Estate, Hong Kong Polytechnic University, Hong Kong, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    air breathing; microfluidics; fuel cell; concentration overpotential;

    机译:呼吸微流体燃料电池;浓度超电势;

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