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Catalytic combustion properties of nanocomplex oxide for natural gas

机译:纳米复合氧化物对天然气的催化燃烧性能

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The catalysts of copper oxide supported on cerium dioxide were prepared by different methods for methane catalytic combustion. The effects of copper content in the catalysts and calcination temperatures of the catalysts on the catalytic activity are investigated. Results show that the complex oxide catalyst exhibits high catalytic activity for methane combustion due to the synergistic effect of CuO and CeO2. The catalyst prepared by impregnation is more active than that prepared by controlled coprecipitation even if CuO content is the same. When W(CuO) <13%, the light-off temperature and full conversion temperature for the CH4 reaction decrease with the increasing of CuO content in the catalysts. However, when the copper content is above 13%, the excess CuO has a negative effect on the catalytic activity owing to the formation of bulk CuO particles. A proper calcinations temperature of 650 ℃ can lead to a high dispersion of CuO and accordingly can enhance the catalytic activity of the composites.
机译:采用不同的甲烷催化燃烧方法制备了负载在二氧化铈上的氧化铜催化剂。研究了催化剂中铜含量和催化剂煅烧温度对催化剂活性的影响。结果表明,由于CuO和CeO2的协同作用,复合氧化物催化剂具有较高的甲烷燃烧催化活性。即使CuO含量相同,通过浸渍制备的催化剂也比通过受控共沉淀制备的催化剂更具活性。当W(CuO)<13%时,CH4反应的起燃温度和完全转化温度随催化剂中CuO含量的增加而降低。然而,当铜含量高于13%时,过量的CuO由于形成大块的CuO颗粒而对催化活性具有负面影响。适当的650℃煅烧温度可导致CuO的高度分散,从而可增强复合材料的催化活性。

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