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THE CHARACTERIZATION OF BACO3-MODIFIED LAOF CATALYSTS FOR THE OCM REACTION

机译:BaCO3修饰的Laof催化剂用于OCM反应的表征

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In this paper, BaCO3 is reported to be a good promoter for rhombohedral LaOF. With the addition of 5-20 mol% BaCO3, methane conversion at 800 degrees C was increased by ca. 40% with only slight loss in C-2 selectivity. At CH4:O-2:N-2 = 2.6:1:12 and a contact time of 0.6 g s ml(-1), the methane conversion was 36.1%, while the C-2 selectivity was 45.3%, giving a C-2 yield of 16.4% over the 10 mol% BaCO3/LaOF catalyst at 800 degrees C. Comparing to LaOF, there was a 30% increase in C-2 yield. Moreover, similar to the case of BaCO3/LaOBr, the C2H4/C2H6 ratio was enhanced by the presence of 5-20 mol% BaCO3. The loaded barium was found to remain on the surface of the catalyst. XRD, O-2-TPD, and CO2-TPD studies revealed that the BaCO3/LaOF catalysts changed greatly in composition, surface site basicity, and active site concentration during OCM reaction. In situ Raman studies disclosed that at 700 degrees C under CH4/O-2 (2.6/1), O-2(2-) species were present on the 10 mol% BaCO3/LaOF catalyst, while none was observed on LaOF. We conclude that the enhancement in methane conversion over the 5-20 mol% BaCO3/LaOF catalysts was due to the generation of surface BaCO3 clusters on LaOF, which could decompose at the temperature range (700-850 degrees C) adopted for OCM reaction to give BaO entities capable of activating O-2 to adsorbed O-2(2-). (C) 1997 Academic Press. [References: 38]
机译:在本文中,据报道BaCO3是菱形LaOF的良好启动子。加入5-20mol%的BaCO 3,在800℃下的甲烷转化率提高了约10%。 40%,C-2选择性略有下降。在CH4:O-2:N-2 = 2.6:1:12且接触时间为0.6 gs ml(-1)时,甲烷转化率为36.1%,而C-2选择性为45.3%,得到C-相对于10摩尔%的BaCO3 / LaOF催化剂在800摄氏度下的2产率为16.4%。与LaOF相比,C-2产率提高了30%。此外,类似于BaCO 3 / LaOBr的情况,通过存在5-20mol%的BaCO 3来提高C 2 H 4 / C 2 H 6的比率。发现负载的钡保留在催化剂表面上。 XRD,O-2-TPD和CO2-TPD研究表明,在OCM反应过程中,BaCO3 / LaOF催化剂的组成,表面位碱性和活性位浓度发生了很大变化。原位拉曼研究表明,在700摄氏度的CH4 / O-2(2.6 / 1)下,O-2(2-)物质存在于10 mol%的BaCO3 / LaOF催化剂上,而在LaOF上则没有观察到。我们得出结论,与5-20 mol%BaCO3 / LaOF催化剂相比,甲烷转化率的提高是由于在LaOF上生成了表面BaCO3团簇,该簇可在OCM反应所采用的温度范围(700-850摄氏度)下分解为给出能够激活O-2使其吸附O-2(2-)的BaO实体。 (C)1997学术出版社。 [参考:38]

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