首页> 外文期刊>Journal of Environmental Management >New insights about the effect of the synthesis method on the CuO-CeO_2 redox properties and catalytic performance towards CO-PROX reaction for fuel cell applications
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New insights about the effect of the synthesis method on the CuO-CeO_2 redox properties and catalytic performance towards CO-PROX reaction for fuel cell applications

机译:关于燃料电池应用中合成方法对CuO-CeO_2氧化还原特性和对CO-PROX反应催化性能的影响的新见解

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摘要

The preferential oxidation of CO (CO-PROX) is promoted at the interface between CuO and CeO2. For this reason, different synthesis methods of CuO/CeO2 catalysts have been investigated in order to maximize this interface. However, the understanding of the effect of CuO/CeO2 catalysts preparation method on the redox properties and CO-PROX reaction performance is still unclear. In the present work, 2 wt% CuO/CeO2 catalysts were prepared by four synthesis methods, namely co-precipitation with ammonium hydroxide (CP), deposition precipitation with ammonium hydroxide (DA) or urea (DU), and impregnation (IM). The materials were characterized by XRD, SEM-EDS, H-2-TPR, REDOX cycles, N2O passivation and applied to the CO-PROX reaction. The catalytic performance of the investigated materials was evaluated by the TOF values of CO oxidation. CuCe (CP) and CuCe (DU) catalysts were the most stable in terms of redox properties and the most active in the CO-PROX reaction. On the other hand, the CuCe (DA) catalyst presented the least stable behaviour during the redox cycles and the worst performance in CO-PROX reaction, These results clearly show that the stability of the CuO/CeO2 interface, submitted to successive redox cycles, plays a significant role towards the CO-PROX reaction and that this stability depends on the employed synthesis method.
机译:在CuO和CeO2之间的界面上促进了CO的优先氧化(CO-PROX)。因此,已经研究了CuO / CeO2催化剂的不同合成方法以最大化该界面。但是,对于CuO / CeO2催化剂的制备方法对氧化还原性能和CO-PROX反应性能的影响尚不清楚。在本工作中,通过四种合成方法制备了2 wt%的CuO / CeO2催化剂,即与氢氧化铵(CP)共沉淀,与氢氧化铵(DA)或尿素(DU)共沉淀和浸渍(IM)。通过XRD,SEM-EDS,H-2-TPR,REDOX循环,N2O钝化对材料进行了表征,并将其应用于CO-PROX反应。通过CO氧化的TOF值评估了所研究材料的催化性能。就氧化还原特性而言,CuCe(CP)和CuCe(DU)催化剂最稳定,并且在CO-PROX反应中最活跃。另一方面,CuCe(DA)催化剂在氧化还原循环中表现出的稳定性最差,而在CO-PROX反应中表现最差。这些结果清楚地表明,CuO / CeO2界面的稳定性受到连续的氧化还原循环的影响,在CO-PROX反应中起着重要作用,这种稳定性取决于所采用的合成方法。

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