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Investigation of carbon fiber gas diffusion layers by means of synchrotron X-ray tomography

机译:同步加速器X射线断层扫描研究碳纤维气体扩散层

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The 3-dimensional spatial distribution of liquid water in different gas diffusion layer (GDL) materials was analyzed using synchrotron X-ray tomography. The capability of the method was demonstrated by virtually separating the GDL components in order to facilitate individual analysis of fiber material, liquid water and gas filled pore spaces. The influence of hydrophobic surface treatment on the water distribution in the GDL was illustrated by analyzing three GDL materials with different degrees of hydrophobicity. In the least hydrophobic sample, liquid water tends to form larger clusters which stretch out about several hundred μm inside the porous GDL. In contrast, only small water clusters were found in the strongly hydrophobic material with high Polytetrafluoroethylene (PTFE)-content as the liquid is partially pressed out of the GDL. Additionally, the influence of fiber orientation on the water distribution in the felt material was demonstrated.
机译:使用同步加速器X射线断层扫描技术分析了不同气体扩散层(GDL)材料中液态水的3维空间分布。通过虚拟分离GDL组分来证明该方法的功能,以便于对纤维材料,液态水和气体填充的孔隙空间进行单独分析。通过分析三种疏水性不同的GDL材料,说明了疏水表面处理对GDL中水分布的影响。在疏水性最低的样品中,液态水倾向于形成较大的簇,这些簇在多孔GDL内部延伸约数百微米。相反,当液体被部分压出GDL时,在具有高聚四氟乙烯(PTFE)含量的强疏水性材料中仅发现少量水团簇。另外,证明了纤维取向对毡材料中水分布的影响。

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