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Research on the Selectivity and Activity of Ethane Oxidation Dehydrogenation with CO2 on Cr-based Catalyst

机译:研究乙烷氧化脱氢对CR基于CR的催化剂的选择性和活性的研究

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Catalysts containing different Cr load (5%~15%) supported on SiO2 were prepared using the incipient wetness impregnation method. The influence of Cr load was investigated for the ethane oxidation dehydrogenation with CO2 and the difference between Co, Fe and Cr were compared. The catalytic activity is affected by the load of the Cr/SiO2.Cr-10%/SiO2 exhibits best catalytic performance, providing ethane conversion of 30.53% as well as 98.64% ethylene selectivity at 650°C. Excessive load increases the aggregation and grain size of active phase, which gaes against catalytic activity. Furthermore, overload increases the crystallization of α-Cr2O3, which is difficult for reduction and is adverse for catalytic activity. Ethane conversion of Cr, Co and Fe based catalysts is corresponding to redox ability. Cr- 10%/SiO2(30.53%) takes the lead and Fe-10%/SiO2 is the least active (18.98%). Co-10%/SiO2 is suitable for reforming reaction as its ethylene selectivity is only 19.60% at 650°C.
机译:使用初期湿度浸渍法制备了SIO2支持的不同CR负载(5%~15%)的催化剂。 研究了CR载荷的影响,用于与CO2的乙烷氧化脱氢作用,并比较了CO,FE和CR之间的差异。 催化活性受CR/SIO2.CR-10%/SIO2的负载影响,表现出最佳的催化性能,可在650°C下乙烷转化率30.53%,乙烯选择性为98.64%。 过多的负载增加了活性相的聚集和晶粒大小,该相位反对催化活性。 此外,过载增加了α-CR2O3的结晶,这很难减少,并且对催化活性是不利的。 CR,CO和FE基催化剂的乙烷转化率对应于氧化还原能力。 CR-10%/SIO2(30.53%)占据领先优势,而Fe-10%/siO2是最不活跃的(18.98%)。 CO-10%/SIO2适用于改革反应,因为其乙烯选择性在650°C时仅为19.60%。

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