简介概要

Effect of loading content of copper oxides on performance of Mn-Cu mixed oxide catalysts for catalytic combustion of benzene

来源期刊:Journal of Rare Earths2012年第9期

论文作者:曹红岩 李小双 陈耀强 龚茂初 王健礼

文章页码:871 - 877

摘    要:A series of Mn-Cu mixed oxide catalysts were prepared by precipitation method. The catalysts were characterized by N 2 adsorption-desorption, H 2 -TPR and XPS. When the loading ratio of manganese oxides to copper oxides was 8:2 or 7:3, the catalysts possessed better catalytic activity, and benzene was converted completely at 558 K. Results of H 2 -TPR showed that the loading of a small amount of copper oxides decreased the reduction temperature of catalysts. Results of XPS showed that the loading of a small amount of copper oxides increased the proportion of manganese and defective oxygen on the surface of catalysts, and stabilized manganese at higher oxidation state. And the catalyst with the loading ratio 7:3 was a little worse than 8:2, since the interaction between manganese oxides and copper oxides is too strong, copper oxides migrate to the surface of catalysts and manganese oxides in excess are immerged.

详情信息展示

Effect of loading content of copper oxides on performance of Mn-Cu mixed oxide catalysts for catalytic combustion of benzene

曹红岩,李小双,陈耀强,龚茂初,王健礼

Key Laboratory of Green Chemistry & Technology of Ministry of Education, College of Chemistry, Sichuan University

摘 要:A series of Mn-Cu mixed oxide catalysts were prepared by precipitation method. The catalysts were characterized by N 2 adsorption-desorption, H 2 -TPR and XPS. When the loading ratio of manganese oxides to copper oxides was 8:2 or 7:3, the catalysts possessed better catalytic activity, and benzene was converted completely at 558 K. Results of H 2 -TPR showed that the loading of a small amount of copper oxides decreased the reduction temperature of catalysts. Results of XPS showed that the loading of a small amount of copper oxides increased the proportion of manganese and defective oxygen on the surface of catalysts, and stabilized manganese at higher oxidation state. And the catalyst with the loading ratio 7:3 was a little worse than 8:2, since the interaction between manganese oxides and copper oxides is too strong, copper oxides migrate to the surface of catalysts and manganese oxides in excess are immerged.

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