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首页> 外文期刊>Journal of Materials Science >Characterization of cerium and copper species in Cu-Ce-Al oxide systems by temperature programmed reduction and electron paramagnetic resonance
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Characterization of cerium and copper species in Cu-Ce-Al oxide systems by temperature programmed reduction and electron paramagnetic resonance

机译:通过程序升温还原和电子顺磁共振表征Cu-Ce-Al氧化物系统中的铈和铜物质

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摘要

The reducibility of Ce-Al-O and Cu-Ce-Al-O solids is studied by H-2-TPR and EPR in order to identify the different ceria and copper oxide species. The study of Ce-Al-O oxides shows that dispersion of ceria on alumina improves reducibility of ceria bulk and stabilizes surface ceria. Concerning quantitative results, ceria reduction extent is more important for Ce-Al-O oxides than for pure ceria. This result can be related to the dispersion of ceria on alumina which decreases ceria crystallites size and enhances the ceria bulk reduction. For ternary oxides, copper oxide and ceria interact strongly. Introduction of copper facilitated ceria reduction, and quantitatively, the presence of copper favors the total reduction of ceria contrary to Ce-Al-O oxides. When ceria loading is low, two copper species are identified, and are attributed to small clusters and highly dispersed copper oxides. During the reduction of copper species, a partial reduction of ceria is observed. Increasing of copper loading leads to the formation of CuO aggregates. (C) 2004 Kluwer Academic Publishers. [References: 42]
机译:通过H-2-TPR和EPR研究了Ce-Al-O和Cu-Ce-Al-O固体的还原性,以鉴定不同的二氧化铈和氧化铜种类。 Ce-Al-O氧化物的研究表明,二氧化铈在氧化铝上的分散提高了二氧化铈体积的还原性并稳定了表面二氧化铈。关于定量结果,Ce-Al-O氧化物的氧化铈还原程度比纯氧化铈更重要。该结果可能与二氧化铈在氧化铝上的分散有关,二氧化铈减小了二氧化铈晶粒的尺寸并增强了二氧化铈的体积减小。对于三元氧化物,氧化铜和二氧化铈相互作用很强。铜的引入促进了二氧化铈的还原,并且定量地,铜的存在有利于二氧化铈的完全还原,这与Ce-Al-O氧化物相反。当二氧化铈负载量低时,会识别出两种铜,这归因于小簇和高度分散的氧化铜。在减少铜种类的过程中,观察到氧化铈的部分减少。铜负载的增加导致形成CuO聚集体。 (C)2004 Kluwer学术出版社。 [参考:42]

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