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首页> 外文期刊>Journal of power sources >Ex situ visualization of liquid water transport in PEM fuel cell gas diffusion layers
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Ex situ visualization of liquid water transport in PEM fuel cell gas diffusion layers

机译:PEM燃料电池气体扩散层中液态水传输的非原位可视化

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A novel fluorescence microscopy technique for visualizing the transport of liquid water in unsaturated hydrophobic fibrous media has been developed and is applied to the gas diffusion layer of a PEM fuel cell. In the experiments, fluorescein dye solution is pumped through the fibrous hydrophobic gas diffusion layer (GDL) and imaged with fluorescence microscopy. Transient image intensity data is correlated to the liquid surface height and is analyzed and presented in the form of three-dimensional reconstructions of the time-evolving gas/liquid interface inside the fibrous structure. The high spatial resolution of the visualization can resolve the dynamic transport of liquid water through distinct pathways, which helps to refine understanding regarding liquid water transport mechanism within these porous layers. The physical observations suggest that the water is not transported via a converging capillary tree as suggested in prior work and models. Rather, transport is dominated by fingering and channeling. Based on the physical insight obtained from the experiments, a new water transport scheme is proposed as the basis for developing improved models for water transport in hydrophobic gas diffusion layers.
机译:已经开发了用于可视化液态水在不饱和疏水性纤维介质中的传输的新型荧光显微镜技术,并将其应用于PEM燃料电池的气体扩散层。在实验中,荧光素染料溶液被泵送通过纤维状疏水气体扩散层(GDL),并用荧光显微镜成像。瞬态图像强度数据与液体表面高度相关,并以纤维结构内部随时间变化的气/液界面的三维重建的形式进行分析和呈现。可视化的高空间分辨率可以解决液体水通过不同路径的动态传输,这有助于加深对这些多孔层中液体水传输机制的了解。物理观测结果表明,水并没有像先前的工作和模型所建议的那样通过会聚的毛细管树传输。相反,运输以指法和引导为主。基于从实验中获得的物理见识,提出了一种新的水传输方案,作为开发改进的疏水性气体扩散层中水传输模型的基础。

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