燃料电池空气阴极三维重构表征研究进展

Research Progress on 3D Reconstruction Characterization of Fuel Cell Air Cathode

  • 摘要: 燃料电池因效率高、成本低和环境友好等优势受到广泛关注。在燃料电池运行过程中, 空气阴极微观结构变化和液态水分布会影响气体的传质, 进而影响电池的放电性能。电极的可视化技术可以有效地获得空气阴极微观结构信息, 为空气阴极的研究提供重要参考。目前, X射线计算机断层扫描技术(X-ray CT)和聚焦离子束与扫描电子显微镜联用技术(FIB-SEM)对燃料电池空气阴极微观结构的表征应用最为广泛。本文围绕X-ray CT和FIB-SEM两种三维重构技术对燃料电池空气阴极的微观结构、液态水分布、寿命和传质问题的研究进行综述。

     

    Abstract: Fuel cells have received extensive attention due to their high efficiency, low cost, and environmental friendliness. During the operation of the fuel cell, the microstructure change of the air cathode and the distribution of liquid water will affect the mass transfer of the gas, which in turn affects the discharge performance of the cell. The visualization technology of the electrode can effectively obtain the microstructure information of the air cathode, which provides an important reference for the research of the air cathode. At present, X-ray computed tomography (X-ray CT) and focused ion beam combined with scanning electron microscopy (FIB-SEM) are the most widely used techniques to characterize the microstructure of fuel cell air cathodes. In this paper, the research on the microstructure, liquid water distribution, lifetime and mass transfer of fuel cell air cathodes are reviewed by two 3D reconstruction techniques, X-ray CT and FIB-SEM.

     

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