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Strong impact of cobalt distribution on the activity for Co3O4/CaCO3 catalyzing N2O decomposition

机译:钴分布对CO3O4 / CaCO3催化N2O分解活性的强烈影响

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摘要

For the Co3O4/CaCO3 catalysts used for N2O decomposition, the activity of the catalyst prepared by stepwise precipitation is much superior to the catalysts prepared by impregnation or coprecipitation in the same composition. HRTEM observation and EDX analysis indicate that the stepwise precipitation leads to cobalt existing as little Co3O4 crystallites tightly bound to the CaCO3 particles. The special structure made the Co3O4 ideal accessibility and better interaction with the support in the catalyst, and the CaCo2.5(SP) catalyst with this structure is much more active than the CaCo2.5 catalyst reported in literature prepared in traditional method. At 300 degrees C, N2O in the feed gas 2000 ppmv N2O/Ar was completely converted over the CaCo2.5(SP) at 20,000 h(-1). Moreover, the CaCo2.5(SP) catalyst exhibited better resistance to sintering at 800 degrees C and quite high activity under the presence of 5 vol% O-2 and 2 vol% H2O at 350 degrees C as well.
机译:对于用于N 2 O分解的CO 3 O 4 / CaCO 3催化剂,逐步沉淀制备的催化剂的活性远远优于通过在相同的组合物中浸渍或共沉淀制备的催化剂。 HRTEM观察和EDX分析表明,逐步沉淀导致现有的钴,其少的CO3O4微晶紧密地与CaCO 3颗粒结合。 特殊结构使CO3O4理想的可访问性和与催化剂的载体的更好的相互作用,并且通过该结构的CaCO 2.5(SP)催化剂比在传统方法中制备的文献中报道的CaCO 2.5催化剂更活跃。 在300℃下,在20,000h(-1)时,进料气体2000ppmV N 2 O / Ar中的N2O在CaCO 2.5(SP)上完全转化。 此外,CaCO 2.5(SP)催化剂在800℃下表现出更好的烧结烧结,并且在350℃下在5体积%O-2和2体积%H 2 O存在下相当高的活性。

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