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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >In situ electrical conductivity study of titania-supported vanadium-niobium oxide catalysts used in the oxidative dehydrogenation of propane
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In situ electrical conductivity study of titania-supported vanadium-niobium oxide catalysts used in the oxidative dehydrogenation of propane

机译:丙烷氧化脱氢用二氧化钛负载钒铌氧化物催化剂的原位电导率研究

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摘要

The electrical conductivity of a series of TiO_2-supported vanadia-niobia catalysts was measured (i) in pure oxygen to characterize the supported active phases and (ii) in reacting atmospheres to determine their redox properties. In vanadia/titania catalysts, minute amounts of pentavalent V~(5+) ions were dissolved in the sub-lattice of titania by substitution to Ti~(4+) sites, the amount increasing proportionally to the loading of vanadia. Similarly, Nb~(5+) ions also dissolved in the titania sub-lattice, but when niobia were codeposited with vanadia, only V~(5+) ions dissolved in titania. The variations of the electrical conductivity under oxygen and propane as well as in oxygen-propane mixture showed a redox behavior of the catalysts with the consumption of surface O~(2-) anions during the oxidative dehydrogenation of propane and their replacement by gaseous oxygen. A permanent electron transfer exists from the reduced supported oxidic phase to titania. Niobium sites are not easily reduced and slightly affect the redox properties of vanadium sites which are the active sites, whereas niobium acts as an additive favoring the selectivity to propene.
机译:在(i)纯氧中表征了负载型活性相的特性,以及(ii)在反应气氛中测定了一系列TiO_2负载的钒-铌催化剂的电导率,以确定其氧化还原性能。在钒/二氧化钛催化剂中,极少量的五价V〜(5+)离子通过取代Ti〜(4+)位点而溶解在二氧化钛的亚晶格中,该量与钒的负载成比例地增加。类似地,Nb〜(5+)离子也溶解在二氧化钛亚晶格中,但是当纳米比亚与钒共沉积时,只有V〜(5+)离子溶解在二氧化钛中。氧气和丙烷以及氧气-丙烷混合物中电导率的变化表明,在丙烷氧化脱氢和用气态氧置换过程中,催化剂的氧化还原行为随着表面O〜(2-)阴离子的消耗而变化。存在从还原的负载的氧化相到二氧化钛的永久性电子转移。铌的位点不易还原,并稍微影响作为活性位点的钒位点的氧化还原性能,而铌则充当有利于丙烯选择性的添加剂。

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