首页> 外文期刊>Applied Surface Science >Combined Cr and S poisoning behaviors of La_(1-x)Sr_xMnO_(3±δ) and La_(1-x)Sr_xCO_(1-y)Fe_yO_(3-δ) cathodes in solid oxide fuel cells
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Combined Cr and S poisoning behaviors of La_(1-x)Sr_xMnO_(3±δ) and La_(1-x)Sr_xCO_(1-y)Fe_yO_(3-δ) cathodes in solid oxide fuel cells

机译:在固体氧化物燃料电池中组合CR和S LA_(1-X)SR_XMNO_(3±)SR_XMNO_(3±)SR_XCO_(1-Y)FE_YO_(3-Δ)阴极的LA_(1-X)SR_XMNO_(3±)SR_XCO_(3-Δ)阴极的CR和S中毒行为

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Although the individual effects of airborne Cr and S contaminants on SOFC cathode performance degradation have been extensively studied, the combined effects of Cr and S contaminants remain largely unexplored. Under the real SOFC operating condition where the Cr and S species coexist, their effects may compete, affecting the poisoning behavior. Our investigation reveals that the combined Cr and S poisoning behavior of LSCF remains different from those of individual Cr and S poisonings, while the combined poisoning mechanism of LSM is equivalent to the sum of those of individual Cr and S effects. For LSCF electrode, gaseous Cr species are deposited mainly at the LSCF/GDC interface by electrochemical reduction, rather than forming SrCrO4 on LSCF surfaces (as in the case of Cr-only poisoning), indicating no reaction between Cr vapors and SrO on the LSCF surface. Thermodynamic analysis demonstrates that the SrO on LSCF surface absorbs SO2 ((g)) and thereby loses the Cr-gettering effect, allowing Cr vapors to flow through LSCF and to reach the LSCF/GDC interface where the Cr deposition occurs. Unlike LSCF, LSM electrode shows cumulative effects of Cr and S, as Cr accumulation occurs at the triple-phase boundary and S absorption takes place at localized Sr-rich regions.
机译:虽然已经广泛研究了空气传播CR和S污染物对SOFC阴极性能降解的个性效果,但Cr和S污染物的组合效果仍然很大程度上是未开发的。在CR和S物种共存的真实SOFC操作条件下,它们的效果可能会竞争,影响中毒行为。我们的研究表明,LSCF的合并CR和S中毒行为与单个CR和S中毒的组合仍然不同,而LSM的组合中毒机制相当于单个CR和S效应的总和。对于LSCF电极,通过电化学还原主要在LSCF / GDC界面处沉积气体CR物种,而不是在LSCF表面上形成Srcro4(如Cr-onl中毒的情况),表明CR蒸气和LSCF上的SRO之间没有反应表面。热力学分析表明,LSCF表面上的SRO吸收SO2((g)),从而损失Cr-gettering效果,允许Cr蒸气流过LSCF并到达CR沉积的LSCF / GDC接口。与LSCF不同,LSM电极显示CR和S的累积效果,因为在三相边界处发生CR积聚,并且在富裕的SR富有的地区发生了S吸收。

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