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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Oxidative coupling of methane on fluorite-structured samarium-yttrium-bismuth oxide
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Oxidative coupling of methane on fluorite-structured samarium-yttrium-bismuth oxide

机译:甲烷在萤石结构的-钇-铋氧化物上的氧化偶联

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The catalytic properties of dense fluorite-structured Bi1.5Y0.3Sm0.2O3-delta (BYS) pellets for oxidative coupling of methane (OCM) to ethane and ethylene (C-2 products) were studied in a packed-bed reactor in co-feed mode. The effects of temperature, feed flow rate, CH4/O-2 and He/(CH4 + O-2) ratios on the OCM performance over BYS were systematically investigated. The appropriate operating conditions were found to be: temperature, 900-1000 degreesC; total flow rate, 90-150 ml (STP)/g min; CH4/O-2 ratio, 2-3.5; He/(CH4 + O-2) ratio, 0.75-1.75. Under these conditions, C-2 yields of 20-27%, C-2 selectivities of 50-62% and C2 space-time yield of up to 6.9 mu mol/g s were achieved. The good OCM catalytic properties of BYS are believed to be related to its fluorite-type phase structure and large oxygen ion mobility at high temperatures. OCM kinetics of BYS oxide was studied with the assumption that no C2 products were converted to CO, under low to medium methane conversion range. Lumped rate equations for C-2 and COx formation were obtained as functions of temperature, O-2 and CH4 partial pressures. The solid phase oxygen ions are responsible for the C-2 formation, while the gas phase oxygen molecules enhance the COx formation. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 19]
机译:在共床反应器的填充床反应器中研究了致密萤石结构的Bi1.5Y0.3Sm0.2O3-δ(BYS)颗粒对甲烷(OCM)与乙烷和乙烯(C-2产品)氧化偶联的催化性能。供稿模式。系统地研究了温度,进料流速,CH4 / O-2和He /(CH4 + O-2)比对BYS上OCM性能的影响。发现合适的操作条件为:温度,900-1000摄氏度;总流量90-150 ml(STP)/ g min; CH4 / O-2比为2-3.5; He /(CH4 + O-2)比为0.75-1.75。在这些条件下,C-2的收率为20-27%,C-2的选择性为50-62%,C2的时空收率高达6.9μmol / g s。据认为,BYS的良好OCM催化性能与其萤石型相结构和高温下较大的氧离子迁移率有关。在低至中等甲烷转化率范围内,假设没有C2产物转化为CO的假设下,研究BYS氧化物的OCM动力学。获得了C-2和COx形成的总速率方程,作为温度,O-2和CH4分压的函数。固相氧离子负责C-2的形成,而气相氧分子则促进COx的形成。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:19]

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