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THE IMPACT OF AQUEOUS IMPREGNATION ON THE PROPERTIES OF PREREDUCED VS PRECALCINED CO/SIO2

机译:水性浸渍对预还原VS预煅烧CO / SIO2性能的影响

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One of the methods of preparing model supported metal catalysts for fundamental studies of promoter effects is by sequential impregnation of reduced catalysts. In general, such promotion has been found not to alter the metal particle size distribution. However, the promotion process itself may possibly result in chemical and/or structural modifications of certain catalysts. In order to better understand how the process of promotion may itself modify a Co catalyst, the effect of water impregnation and drying at various temperatures (25-110 degrees C) of reduced or calcined 20% Co/SiO2 was investigated. The results show that water impregnation and subsequent drying had a significant effect on the structure of the reduced and passivated Co catalysts. The Co oxide phase declined in favor of a Co silicate/hydrosilicate phase which reduced completely only above 800 degrees C. Steady-state isotopic transient kinetic studies of ethane hydrogenolysis revealed that the surface concentration of reaction intermediates declined following water impregnation, which suggests that the Co silicate/hydrosilicate formed was inactive. Aqueous impregnation and drying of calcined Co/SiO2, on the other hand, did not appear to modify the catalyst in any significant way. (C) 1995 Academic Press, Inc. [References: 32]
机译:用于对促进剂作用进行基础研究的制备模型负载的金属催化剂的方法之一是通过顺序浸渍还原的催化剂。通常,已经发现这种促进作用不会改变金属粒度分布。但是,促进过程本身可能会导致某些催化剂的化学和/或结构改性。为了更好地理解促进过程本身如何修饰Co催化剂,研究了在不同温度(25-110摄氏度)下还原或煅烧20%Co / SiO2的水浸渍和干燥的效果。结果表明,水浸渍和随后的干燥对还原和钝化的Co催化剂的结构具有显着影响。 Co氧化物相下降,而Co硅酸盐/氢硅酸盐相仅在800℃以上才完全还原。乙烷氢解的稳态同位素瞬态动力学研究表明,水浸渍后反应中间体的表面浓度下降。形成的硅酸钴/氢硅酸钴是惰性的。另一方面,煅烧的Co / SiO 2的水浸渍和干燥似乎没有以任何明显的方式改性催化剂。 (C)1995 Academic Press,Inc. [参考:32]

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