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Catalytic methane reforming into synthesis gas over developed composite materials prepared by combustion synthesis

机译:通过燃烧合成制备的发育复合材料的合成气中催化甲烷重整

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In this work, the results of carbon dioxide reforming and partial oxidation of CH4 on the catalysts prepared by solution combustion synthesis (SCS) and impregnation of moisture capacity methods are presented. Investigation of the activity of catalysts produced from initial mixture of Co(NO3)(2)-Mg(NO3)(2)-H3BO3 and glycine/urea of different composition was carried out for the production of synthesis gas and comparison of carbon dioxide reforming and partial oxidation of methane. Co((3))(2)+Mg(NO3)(2)+H3BO3 catalyst containing glycine has a higher activity than the catalyst containing urea. The CH4 conversion reaches 54.6%, and the conversion of CO2 increases to 51.7%, while the yield of H-2 and CO is 54.1% and 51.3%, respectively, at 900 degrees C. It was found that CoMg3O4 spinel formation is due to magnesium cations substitution of cobalt cations. Mg2+ ions are replaced by ions of Co2+, as a consequence CoMg3O4 lattice parameters increase, since the ionic radius of Mg2+ (0.66 angstrom) less than C2+ (0.72 angstrom). Some advantage of SCS catalysts in comparison with catalysts prepared by the traditional impregnation method in the processes of dry reforming and partial oxidation of methane was shown.
机译:在这项工作中,介绍了通过溶液燃烧合成(SCS)制备的催化剂上的二氧化碳重整和CH4的部分氧化和浸渍水分能力方法的结果。对Co(NO 3)(2)-mg(2)-mg(2)-H3BO3和不同组合物的甘氨酸/尿素产生的初始混合物产生的催化剂的活性进行用于生产合成气和二氧化碳重整的比较和部分氧化甲烷。 CO((3))(2)+ Mg(NO 3)(2)+ H3BO 3含有甘氨酸的催化剂的活性比含有尿素的催化剂更高。 CH 4转化率达到54.6%,CO2的转化率增加到51.7%,而H-2和Co的产率分别为54.1%和51.3%,900℃。发现Comg3O4尖晶石形成是由于镁阳离子替代钴阳离子。 Mg2 +离子被CO 2 +的离子代替,因此COMG3O4晶格参数增加,因为Mg2 +(0.66埃的)小于C2 +(0.72埃)的离子半径。 SCS催化剂的一些优点与通过传统浸渍方法制备的催化剂的催化剂,示出了在干重整和甲烷的部分氧化过程中。

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