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Three-Dimensional Microstructural Imaging of Sulfur Poisoning-Induced Degradation in a Ni-YSZ Anode of Solid Oxide Fuel Cells

机译:固体氧化物燃料电池Ni-YSZ阳极中硫中毒降解的三维显微组织成像

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Following exposure to ppm-level hydrogen sulfide at elevated temperatures, a section of a solid oxide fuel cell (SOFC) Ni-YSZ anode was examined using a combination of synchrotron-based x-ray nanotomography and x-ray fluorescence techniques. While fluorescence measurements provided elemental identification and coarse spatial mapping, x-ray nanotomography was used to map the detailed 3-D spatial distribution of Ni, YSZ, and a nickel-sulfur poisoning phase. The nickel-sulfur layer was found to form a scale covering most of the exposed nickel surface, blocking most fuel reformation and hydrogen oxidation reaction sites. Although the exposure conditions precluded the ability to develop a detailed kinetic description of the nickel-sulfur phase formation, the results provide strong evidence of the detrimental effects of 100?ppm hydrogen sulfide on typical Ni-YSZ anode materials.
机译:在高温下暴露于ppm级硫化氢之后,使用基于同步加速器的X射线纳米断层扫描和X射线荧光技术的组合检查了固体氧化物燃料电池(SOFC)Ni-YSZ阳极的一部分。虽然荧光测量提供了元素识别和粗略的空间映射,但使用X射线纳米断层扫描绘制了Ni,YSZ和镍-硫中毒相的详细3-D空间分布图。发现镍-硫层形成覆盖大部分暴露的镍表面的水垢,阻止了大多数燃料重整和氢氧化反应位点。尽管暴露条件排除了对镍-硫相形成进行详细动力学描述的能力,但结果提供了有力证据表明100?ppm硫化氢对典型的Ni-YSZ阳极材料有不利影响。

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