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首页> 外文期刊>International Journal of Physical Sciences >Study of performance of CeO2/ZnO nanocatalysts for the oxidative coupling of methane using carbon dioxide as oxidant
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Study of performance of CeO2/ZnO nanocatalysts for the oxidative coupling of methane using carbon dioxide as oxidant

机译:CeO2 / ZnO纳米催化剂在二氧化碳催化下甲烷氧化偶联反应中的性能研究

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This study shows how CeO2/ZnO nanocatalysts were prepared by combining homogeneous precipitation with micro emulsion using a conventional heating technique. The catalysts were then used in a conventional fixed bed reactor for the oxidative coupling of methane using carbon dioxide as an oxidant. Catalyst performance tests were carried out at atmospheric pressure, feed gas of 33 and 45 ml/min, and reaction temperatures was in the range of 700 to 900°C. The effect of adding promoters such as Lithium (Li), Bismuth (Bi), and Zirconium (Zr) in various loadings was studied. In this regard,it was found that proper calcination conditions can yield a nanocatalyst structure. However, the conditions for the occurrence of a nanostructure depend strongly on the type of the added promoter.The effects of the number of operating parameters were studied. Catalysts prepared with Zr were found to be more active and selective to ethylene at high calcination temperatures. Catalysts prepared with Bi, on the other hand, showed better activity at lower reaction temperatures. As with Li, the catalysts showed nearly the same activity at low calcination temperatures. As to the effect of feed ratio of methane to carbon dioxide, catalysts prepared with Li showed good activity and selectivity with the increase in the feed ratio. In opposite, catalysts prepared with Zr showed better activity and selectivity at low feed ratios. As to Bi, the increase in feed ratio has an effect on the catalyst activity but not on the selectivity. The study of the effect of different loading of Zr showed that optimal loadings have to be below 5% in weight.
机译:这项研究表明,如何通过使用常规加热技术将均相沉淀与微乳液相结合来制备CeO2 / ZnO纳米催化剂。然后将催化剂用于常规的固定床反应器中,以二氧化碳为氧化剂将甲烷氧化偶联。催化剂性能测试在大气压,进料气为33和45ml / min的条件下进行,反应温度为700至900℃。研究了在各种负载下添加促进剂如锂(Li),铋(Bi)和锆(Zr)的效果。在这方面,发现适当的煅烧条件可以产生纳米催化剂结构。然而,纳米结构发生的条件在很大程度上取决于所添加促进剂的类型。研究了操作参数数目的影响。发现用Zr制备的催化剂在高煅烧温度下对乙烯更具活性和选择性。另一方面,用Bi制备的催化剂在较低的反应温度下显示出更好的活性。与Li一样,催化剂在低煅烧温度下表现出几乎相同的活性。关于甲烷与二氧化碳的进料比的影响,随着进料比的增加,用Li制备的催化剂显示出良好的活性和选择性。相反,用Zr制备的催化剂在低进料比下显示出更好的活性和选择性。至于Bi,进料比的增加对催化剂活性有影响,但对选择性没有影响。对不同Zr负载量的影响的研究表明,最佳负载量必须低于5%(重量)。

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