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What does carbon tolerant really mean? Operando vibrational studies of carbon accumulation on novel solid oxide fuel cell anodes prepared by infiltration

机译:碳耐受性真的是什么意思? 渗透制备的新型固体氧化物燃料电池阳极上碳积累的Operando振动研究

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Operando Raman spectroscopy and electrochemical techniques were used to examine carbon deposition on niobium doped SrTiO3 (STN) based SOFC anodes infiltrated with Ni, Co, Ce0.9Gd0.1O2 (CGO) and combinations of these materials. Cells were operated with CH4/CO2 mixtures at 750 degrees C. Raman data shows that carbon forms on all cells under operating conditions when Ni is present as an infiltrate. Additional experiments performed during cell cool down, and on separate material pellets (not subject to an applied potential), show that chemically labile oxygen available in the CGO infiltrate will preferentially oxidize all deposited surface carbon as temperatures drop below 700 degrees C. These observations highlight the benefit of CGO as a material in SOFC anodes but more importantly, the value of operando spectroscopic techniques as a tool when evaluating a material's susceptibility to carbon accumulation. Solely relying on ex situ measurements will potentially lead to false conclusions about the studied materials' ability to resist carbon and improperly inform efforts to develop mechanisms describing electrochemical oxidation and material degradation mechanisms in these high temperature energy conversion devices.
机译:使用Ni,Co,Ce0.9GD0.1O2(CGO)和这些材料的组合,用于检查掺杂掺杂SrTiO3(STN)基于铌掺杂SRTIO3(STN)的SRTIO3(STN)的SRTIO3(STN)的SRTIO3(STN)的SRTIO3(STN)的SRTIO3(STN)的碳沉积。在750℃的CH 4 / CO 2混合物中使用CH 4 / CO 2混合物进行操作。拉曼数据显示在Ni作为渗透时在操作条件下的所有细胞上形成碳。在细胞冷却期间进行的另外的实验,并在单独的材料颗粒上(不受施加的电位),表明CGO渗透中可用的化学不稳定氧将优先氧化所有沉积的表面碳,因为温度低于700℃。这些观察结果突出CGO作为SOFC阳极中的材料的益处,但更重要的是,在评估材料对碳积累的易感性时,Operando光谱技术作为工具的价值。仅依靠EX​​原位测量将可能导致研究材料抵抗碳的能力和不当行为努力制定描述这些高温能量转换装置中的电化学氧化和物质劣化机制的机制的虚假结论。

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