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Studies on oxidative coupling of methane using Sm2O3-based catalysts

机译:使用SM2O3催化剂甲烷氧化偶联的研究

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The effects of Mn/Na2WO4, Li, and CaO loading on the monoclinic Sm2O3 catalyst were investigated for the oxidative coupling of methane using O-2 or N2O as an oxidant. The catalysts were prepared by wet impregnation method and characterized by XRD, BET, CO2-TPD, and XPS analysis. Impregnation of Mn/Na2WO4 on monoclinic Sm2O3 resulted in the formation of Sm2-xMnxO3 phase, decreasing the catalytic performance. Li impregnation increased the C-2 selectivity but decreased the catalytic activity. The SmLiO2 formation increased the catalytic activity and selectivity. High amounts of CaO impregnation increased the C-2 selectivity of monoclinic Sm2O3 without a loss in catalytic activity. 6Li/m-Sm2O3 were found unstable due to the Li loss from the catalyst. The 15CaO/m-Sm2O3 was quite stable and showed 8.2% ethylene yield with N2O use, much higher than that was obtained with the well-known 2Mn/5Na(2)WO(4)/SiO2 and 4Li/MgO catalysts. N2O was more selective than O-2 as an oxidant and enhanced ethylene formation.
机译:研究了Mn / Na2WO4,Li和CaO负载对单斜斜液SM2O3催化剂的影响,用于使用O-2或N 2 O作为氧化剂的甲烷氧化偶联。催化剂通过湿浸渍法制体制备,其特征在于XRD,BET,CO2-TPD和XPS分析。浸渍Mn / Na 2 O4在单斜斜晶体SM2O3上产生SM2-XMNXO3相的形成,降低了催化性能。李浸渍增加了C-2选择性,但降低了催化活性。 SMLIO2形成增加了催化活性和选择性。大量的CaO浸渍增加了单斜晶体Sm 2 O 3的C-2选择性,而不会在催化活性中的损失。由于催化剂的锂损失,4LI / m-SM2O3被发现不稳定。 15CaO / M-SM2O3非常稳定,并显示8.2%的乙烯产率,N 2 O使用远高于用众所周知的2Mn / 5na(2)WO(4)/ SiO 2和4LI / MgO催化剂获得的。 N2O比O-2更具选择性,作为氧化剂和增强的乙烯形成。

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