مقاله Simulation and Experimental studies of Oxidative Coupling
نوشته شده به وسیله ی ali در تاریخ 95/7/29:: 4:29 صبح
مقاله Simulation and Experimental studies of Oxidative Coupling of Methane in a Bench Scale Fixed Bed Reactor using MnدرNa2WO4/SiO2 catalyst تحت word دارای 11 صفحه می باشد و دارای تنظیمات در microsoft word می باشد و آماده پرینت یا چاپ است
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بخشی از متن مقاله Simulation and Experimental studies of Oxidative Coupling of Methane in a Bench Scale Fixed Bed Reactor using MnدرNa2WO4/SiO2 catalyst تحت word :
سال انتشار: 1388
محل انتشار: ششمین کنگره بین المللی مهندسی شیمی
تعداد صفحات: 11
نویسنده(ها):
Ali Valadkhani – Chemical and Petroleum Engineering Department Sharif University of Technology,
Mohammad Shahrokhi – Chemical and Petroleum Engineering Department Sharif University of Technology,
Mahmoud Reza Pishvaie – Chemical and Petroleum Engineering Department Sharif University of Technology,
Saeed Zarrinpashneh – Research Institute of Petroleum Industry, Gas Research Division Tehran/Iran
چکیده:
Oxidative coupling of methane (OCM) has been modeled in a fixed bed tubular reactor using one dimensional pseudohomogeneous model over Mn-Na2WO4/SiO2 catalyst. A nine step OCM reaction model has been considered for reaction kinetic study. A reactor tube with 20 mm in diameter and 400 mm length surrounded by molten salt for removing released heat from reactions was used for experimental study. Based on an objective function and using experimental data, kinetic parameters of OCM reactions are obtained. Good agreement has been observed betweensimulation and experimental data over operating conditions of experiments. Maximum calculated errors for methane conversion and C2+ selectivity are 12.4% and 4.8%, respectively. The effects of different factors such as CH4/O2 ratio and feed temperature were investigated for three different cases namely isothermal, adiabatic and constant wall temperature through simulation studies. Also the effects of CH4/O2 ratio, nitrogen content as a dilution material and contact time were studied experimentally. Experimental results indicate that C2 + selectivity has an optimum value for CH4/O2 ratio of 6 and 23% N2 content. Based on results obtained for above operating conditions, the isothermal operation has optimal performance.
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