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Rational Design of Sulfur-Tolerant Anode Materials for Solid Oxide Fuel Cells

机译:用于固体氧化物燃料电池的耐硫阳极材料的合理设计

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The state-of-the-art nickel-yttria stabilized zirconia (Ni-YSZ) cermet anodes for solid oxide fuel cells (SOFC) are susceptible to poisoning by ppm-level sulfur contaminants (e.g., hydrogen sulfide, H_2S) typically found in most hydrocarbon fuels, leading to severe performance loss or even cell failure. This problem calls for the development of new sulfur-tolerant anode materials for SOFC with high electrochemical activity. In light of such a research need and the "trial-and-error" nature of many previous studies in this area, this paper describes an effective approach to rational design of sulfur-tolerant anode materials for SOFC. First, our selection of potential sulfur-tolerant anode materials is guided by the insights about the sulfur poisoning mechanism of conventional Ni-YSZ cermet anodes. Further, thermochemical analysis and properly-designed experiments are used as a powerful tool to quickly screen and narrow down on candidates that are worth further investigations.
机译:用于固体氧化物燃料电池(SOFC)的最先进的镍钇稳定的氧化锆(Ni-YSZ)Cermet阳极(SOFC)易于通过最多发现的PPM级硫污染物(例如,硫化氢,H_2S)中毒烃料,导致严重的性能损失甚至细胞衰竭。该问题要求开发用于具有高电化学活性的SOFC的新型硫耐受性材料。鉴于此领域的许多先前研究的“试验和错误”性质,本文介绍了一种有效的SOFC耐硫可阳极材料设计方法。首先,我们选择潜在的硫耐受性阳极材料是由常规Ni-YSZ金属陶瓷阳极的硫中毒机理的见解引导的。此外,热化学分析和适当设计的实验用作快速筛选和缩小值得进一步调查的候选人的强大工具。

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