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Comparative study of propane oxidative dehydrogenation in fluidized and fixed bed reactor

机译:流化固定床反应器中丙烷氧化脱氢的对比研究

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Supported vanadia catalyst was successfully synthesized using wet impregnation of gamma-alumina to study propane oxidative dehydrogenation (POD). The prepared catalysts were characterized with X-ray diffraction and BET tests. To investigate performance of fluidized bed reactor in comparison to fixed bed micro-reactor, propane conversion and propylene selectivity were measured in temperatures of 480 to 550 degrees C and GHSV of 48000, 60000, and 78000 cc/gr.hr at equimolar feed ratio of propane to oxygen. The results indicated that at constant temperature propane conversion obtained in the fixed bed reactor was higher. But fluidized bed is superior to fixed bed reactor in terms of propylene selectivity leading to considerably higher propylene yields over the fixed bed. It is suggested that pre-filtering effect induced by hydrodynamics of fluidized bed reactor has major effect in the enhancement of propylene selectivity beyond that of fixed bed micro-reactor.
机译:使用γ-氧化铝的湿浸渍成功地合成支持的钒丙烷催化剂以研究丙烷氧化脱氢(POD)。 制备的催化剂以X射线衍射和BET试验表征。 为了研究流化床反应器的性能与固定床微反应器相比,在480至550℃和48000,60000和78000cc / gr.hr的温度下测量丙烷转化率和丙烯选择性,以等摩尔进给比 丙烷到氧气。 结果表明,在固定床反应器中获得的恒温丙烷转化率较高。 但是,在丙烯选择性方面,流化床优于固定床反应器,导致在固定床上产生相当高的丙烯产量。 建议流化床反应器的流体动力学诱导的预滤波效果在丙烯选择性提高超出固定床微反应器的丙烯选择性的主要作用。

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