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Redox cycling of Ni-YSZ anode investigated by TPR technique

机译:TPR技术研究Ni-YSZ阳极的氧化还原循环

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Effect of redox cycling on a Ni-YSZ anode prepared from 50 wt.% NiO and 50 wt.% YSZ was investigated by using temperature-programmed reduction (TPR), XRD and SEM techniques. XRD results showed that NiO was formed during re-oxidation. Both the XRD and TPR results depicted that the conversion of nickel to NiO depended on the re-oxidation temperature. The oxidation of Ni to NiO occurred quickly in the initial several minutes and then reached a quasi equilibrium. The TPR profiles tracing the redox cycling showed that it brought continuous changes in the NiO micro-structure at 800 degrees C, whereas at 600 degrees C it had only little effects on the reduction of NiO. Re-oxidation resulted in the formation of spongy aggregates of NiO crystallites. Redox cycling at 800 degrees C led to a continuous decrease in the primary crystallite size of NiO and a high dispersion of the Ni particles. A continuous expansion of the slice sample was observed in both of the oxidized and reduced states during the redox cycling at 800 degrees C, whereas this process did not occur during the redox cycling at 600 degrees C. (c) 2005 Elsevier B.V All rights reserved.
机译:通过使用程序升温还原(TPR),XRD和SEM技术研究了氧化还原循环对由50%(重量)的NiO和50%(重量)的YSZ制成的Ni-YSZ阳极的影响。 XRD结果表明,NiO在再氧化过程中形成。 XRD和TPR结果均表明镍向NiO的转化取决于再氧化温度。在最初的几分钟内,Ni迅速氧化为NiO,然后达到准平衡。跟踪氧化还原循环的TPR曲线表明,它在800摄氏度时带来了NiO微观结构的连续变化,而在600摄氏度时,它对减少NiO的影响很小。再氧化导致NiO微晶海绵状聚集体的形成。在800摄氏度下的氧化还原循环导致NiO的初晶尺寸不断减小,并且Ni颗粒高度分散。在800摄氏度的氧化还原循环过程中,在氧化态和还原态下均观察到切片样品的连续膨胀,而在600摄氏度的氧化还原循环过程中未发生此过程。(c)2005 Elsevier BV版权所有。

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