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Oxidative dehydrogenation of ethane over vanadium-based hexagonal mesoporous silica catalysts

机译:钒基六方介孔二氧化硅催化剂上乙烷的氧化脱氢

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Vanadium-containing hexagonal mesoporous silica catalysts were tested in oxidative dehydrogenation of ethane. V-HMS catalysts (0.3-9.0 wt.% V) were prepared by impregnation with solution of vanadyl acetylacetonate, and by incorporation of vanadium in the synthesis process. The prepared catalysts achieved a different distribution of vanadium species (isolated monomeric units with tetrahedral coordination, oligomeric units connected by V-O-V bonds up to distorted tetrahedral coordination, two-dimensional polymeric units in octahedral coordination, and bulk vanadium oxides). The contribution deals with the understanding of the relationship between the distribution of vanadium species and their activity in ODH of ethane. It has been found that both monomeric and oligomeric vanadium species play important role in ODH of ethane. The activity correlated with the population of oligomeric tetrahedrally coordinated vanadium species, which were evidenced by the UV-vis band at 315 nm. To analyze this effect, V-HMS catalysts were characterized by means of UV-vis spectroscopy, H2-TPR and N2-adsorption.
机译:在乙烷的氧化脱氢中测试了含钒的六角形介孔二氧化硅催化剂。 V-HMS催化剂(0.3-9.0重量%的V)通过用乙酰丙酮氧钒钒溶液浸渍,并在合成过程中掺入钒来制备。制备的催化剂实现了钒物种的不同分布(具有四面体配位的分离的单体单元,通过V-O-V键连接至扭曲的四面体配位的低聚单元,八面体配位的二维聚合物单元和本体钒氧化物)。该贡献致力于了解钒物种的分布与其在乙烷ODH中的活性之间的关系。已经发现,单体和低聚钒物质都在乙烷的ODH中起重要作用。活性与低聚四面体配位的钒物种的数量有关,这由315 nm的UV-vis谱带证实。为了分析这种影响,V-HMS催化剂通过紫外-可见光谱,H2-TPR和N2-吸附进行了表征。

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