首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Alumina support-stabilized nanoscaled vanadium-phosphorous mixed oxides as new catalysts for propane ammoxidation
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Alumina support-stabilized nanoscaled vanadium-phosphorous mixed oxides as new catalysts for propane ammoxidation

机译:氧化铝载体稳定的纳米级钒-磷混合氧化物作为丙烷氨氧化的新催化剂

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Much attention has recently been devoted to the surface of bulk catalysts. It has been proved that the most critical phenomena occur at the surface, which differs significantly from the bulk. To evaluate the role of the bulk in VPO catalyst, vanadium and phosphorus were supported on γ-alumina by incipient wetness impregnation at a total V + P of two monolayers so that nanoscaled VPO phases (n-VPO) form on alumina, such size maximizes the surface-to-bulk ratio. Alumina support stabilizes V~(5+), which may be reduced, while V~(4+) predominates in bulk vanadyl pyrophosphate phase. In addition, the support modifies acid-base and textural properties. The presence of VPO nanocrystals supported on alumina (n-VPO) facilitates investigating the interaction between alumina-dispersed vanadia and VPO-lattice vanadium ions. Both, bulk and supported phases are active for propane ammoxidation affording acrylonitrile yields of 41% and 48%, respectively, at 500 °C. The yield to acrylonitrile per mass unit of VPO increases by 150% at 500 C in the alumina-stabilized n-VPO system when compared to the bulk VPO.
机译:近来,大量的注意力集中在本体催化剂的表面上。已经证明,最关键的现象发生在表面上,这与本体有很大的不同。为了评估本体在VPO催化剂中的作用,通过在两个单层的总V + P上通过初始湿润浸渍将钒和磷负载在γ-氧化铝上,以便在氧化铝上形成纳米级VPO相(n-VPO),这样的尺寸最大表面与体积之比。氧化铝载体稳定了V〜(5+),可以降低,而V〜(4+)在本体钒酸焦磷酸相中占主导地位。另外,载体改变了酸碱和质地特性。负载在氧化铝上的VPO纳米晶体(n-VPO)有助于研究氧化铝分散的钒与VPO-晶格钒离子之间的相互作用。本体相和负载相均对丙烷氨氧化有活性,在500°C下丙烯腈的收率分别为41%和48%。与本体VPO相比,在氧化铝稳定的n-VPO系统中,在500℃下,每质量单位VPO的丙烯腈收率提高150%。

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