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A New Nano-(2Li2O/MgO) Catalyst/Porous Alpha-Alumina Composite for the Oxidative Coupling of Methane Reaction

机译:新型甲烷-氧化偶联纳米(2Li2O / MgO)催化剂/多孔α-氧化铝复合材料

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摘要

The present work discloses a new methodology for the production of detached nano-rods of 2Li2O/MgO catalyst particles on the internal surface of α-Al2O3 porous supports to be used as efficient catalysts for the oxidative coupling of methane reaction (OCM). The peculiarity of our preparatory recipe is the success in producing "detached" nanosized entities on the support surface. The performance of the new catalyst/ support system for the OCM reaction has been evaluated using a special reactor assembly with cross flow of methane and oxygen gas streams. Under the optimum process conditions, the yield of C_2~+ product is 25% at an average reaction temperature of 750°C. Under the optimum conditions, the yield of ethylene reaches 8%. It is shown that the enhanced catalytic properties of the new catalyst/support composite may be attributed to nanoeffects.
机译:本工作公开了一种在α-Al2O3多孔载体的内表面上生产2Li2O / MgO催化剂颗粒的分离纳米棒的新方法,该纳米棒可用作甲烷反应(OCM)氧化偶联的有效催化剂。我们的制备方法的独特之处在于成功地在载体表面上产生了“分离的”纳米级实体。使用特殊的反应器装置对甲烷和氧气流进行交叉流动,评估了用于OCM反应的新型催化剂/载体系统的性能。在最佳工艺条件下,平均反应温度为750°C,C_2〜+产物的收率为25%。在最佳条件下,乙烯的收率达到8%。结果表明,新催化剂/载体复合材料的催化性能增强可能归因于纳米效应。

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