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METHOD FOR MANUFACTURING MULTI-COMPONENT COMPOSITE METAL OXIDE CATALYST

机译:一种多组分复合金属氧化物催化剂的制备方法

摘要

The present invention relates to: a method for manufacturing a multi-component bismuth-molybdenum composite metal oxide catalyst, the method comprising a step of conducting first co-precipitation and second co-precipitation; and a multi-component bismuth-molybdenum composite metal oxide catalyst manufactured by the method. According to the manufacturing method, metal components constituting the catalyst are co-precipitated by two divided steps, the first co-precipitation and the second co-precipitation, and thus the catalyst can have a nearly identical structure to the conventional four-component bismuth-molybdenum catalyst, thereby suppressing the deterioration in catalytic activity due to the deformation of the catalyst structure, and the number of lattice oxygen atoms consumed during the reaction can be controlled to increase the catalytic activity, thereby reducing the generation of byproducts in a catalytic reaction process using the catalyst, particularly, in a catalytic reaction process under relatively low-temperature conditions, and improving the conversion rate of a reactant and the yield of a target product.
机译:本发明涉及一种制造多组分铋-钼复合金属氧化物催化剂的方法,该方法包括进行第一共沉淀和第二共沉淀的步骤。通过该方法制造的多组分铋钼复合金属氧化物催化剂。根据该制造方法,构成催化剂的金属成分通过第一共沉淀和第二共沉淀两个步骤共沉淀,因此该催化剂可以具有与常规四组分铋几乎相同的结构。钼催化剂,从而抑制了由于催化剂结构的变形而引起的催化活性的降低,并且可以控制反应过程中消耗的晶格氧原子数以提高催化活性,从而减少催化反应过程中副产物的产生。特别是在较低温度条件下的催化反应过程中,使用该催化剂,可以提高反应物的转化率和目标产物的产率。

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