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TEMPERATURE-PROGRAMMED SULFIDING OF VANADIUM OXIDES AND ALUMINA-SUPPORTED VANADIUM OXIDE CATALYSTS

机译:钒氧化物和氧化铝支持的钒氧化物催化剂的温度程序化硫化

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Sulfiding of bulk and alumina-supported vanadium oxides has been studied using temperature-programmed sulfiding and reduction techniques. Bulk compounds (V2O5, V2O3) and V/Al2O3 catalysts are sulfided via a similar mechanism. For bulk V2O5, two major sulfiding steps have been identified. At temperatures up to 673 K, V2O5 is reduced to V2O3 by O-S exchange and subsequent rupture of V-S bonds where H2S acts as reducing agent. Sulfiding to V2S3 takes place above 673 K. The catalysts are sulfided more easily than the bulk oxides due to the higher dispersion of the vanadium species. In catalysts sulfided at 673 K which are still partially oxidic, four types of sulfur have been observed, viz, adsorbed H2S, stoichiometric sulfur, S-H groups, and nonstoichiometric (excess) sulfur (S-x). There are indications that (isothermal) room temperature H2S adsorption can be used to determine the dispersion of the supported microcrystallites at higher vanadium loadings. From the present results it is inferred that alumina-supported vanadium-based catalysts, when sulfided at temperatures commonly applied in hydrotreating operations, essentially consist of an oxide, the outer surface of which is sulfided. (C) 1995 Academic Press, Inc. [References: 21]
机译:已经使用程序升温硫化和还原技术对块状和氧化铝负载的钒氧化物进行了硫化。块状化合物(V2O5,V2O3)和V / Al2O3催化剂通过类似的机制硫化。对于块状V2O5,已经确定了两个主要的硫化步骤。在高达673 K的温度下,通过O-S交换和随后的V-S键断裂将V2O5还原为V2O3,其中H2S充当还原剂。硫化到V2S3发生在673 K以上。由于钒物质的分散性较高,因此与本体氧化物相比,催化剂更容易硫化。在673 K时仍部分氧化的硫化催化剂中,观察到四种类型的硫,即吸附的H2S,化学计量的硫,S-H基团和非化学计量的(过量)硫(S-x)。有迹象表明,(等温)室温H2S吸附可用于确定负载较高钒时负载型微晶的分散度。从目前的结果可以推断,氧化铝负载的钒基催化剂在加氢处理操作中通常采用的温度下进行硫化时,基本上由氧化物组成,其外表面被硫化。 (C)1995 Academic Press,Inc. [参考:21]

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