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搅拌反应器全混时间测定方法研究
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作者 卫志华 陈欣 王励生 《成都科技大学学报》 EI CAS CSCD 1991年第6期13-19,共7页
研究了一种新的测定搅拌反应器全混时间的方法。此方法采用两个电导电极,用Apple—Ⅱ微型计算机进行数据采集和处理。它不但具有用单电极测定全混时间的优点,而且能够克服由单电极测定全混时间带来的人为误差,使终点更为明显和准确,并... 研究了一种新的测定搅拌反应器全混时间的方法。此方法采用两个电导电极,用Apple—Ⅱ微型计算机进行数据采集和处理。它不但具有用单电极测定全混时间的优点,而且能够克服由单电极测定全混时间带来的人为误差,使终点更为明显和准确,并能快速、简便、直观地测出全混时间,对科学研究和工厂生产测试都具有实用价值. 展开更多
关键词 反应器 全混时间 搅拌反应器 测定
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Bubble Column Reactor Fluid-dynamic Evaluation at Pilot-plant for Residue and Extra-heavy Crude Oil Upgrading Technology
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作者 Ricardo Sardella Palma Zacarias Luis +1 位作者 Paiva Miguel Medina Henry 《Journal of Chemistry and Chemical Engineering》 2015年第3期176-190,共15页
Bubble column reactors are multiphase contacting devices used in a wide variety of industrial application. Inrtevep S. A. is working on developing technologies to convert heavy and extra-heavy crude oil using this typ... Bubble column reactors are multiphase contacting devices used in a wide variety of industrial application. Inrtevep S. A. is working on developing technologies to convert heavy and extra-heavy crude oil using this type of reactors. Volumetric gas hold up, flow pattern, average gas bubble size, average interfacial area, RTD (residence time distribution), dispersion coefficient, Peclet number are important design parameters for a proper scale up of them. Several cold model experiments have been proposed to determine the previously mentioned parameters at atmospheric conditions, using a plexiglas bubble column reactor at pilot plant scale unit (12 cm diameter). It was also evaluated our own design of internal trays (plates) in the reactor. Air-tap water and air-light oil systems have been used. A wide operating condition range was applied, superficial gas velocity between 0.5-10 cm/s, liquid flowrate between 15-65 I/h. Generally speaking, working without internal trays was found that gas hold up increase along the reactor and it was possible to identify heterogeneous bubble, transition and turbulent flow pattern areas for the air-light oil system. Average gas bubble size increase along the reactor at bubble regime from 2-5 mm but at turbulent regime, stay oscillating between 1-3 mm. Average interfacial area increases exponentially with superficial gas velocity at any reactor height, till 1,412 m2/m3 for the air-light oil system but, at bubble flow regime, the average interfacial area is lower than 100 m2/m3, which negatively impact the reactor performance. Internal trays in the reactor always increase gas hold up at any condition or system used. Residence time distributions curves, Peclet numbers and dispersion coefficients founded, show that this reactor with this kind of design internal trays still tends to be a complete mixing reactor under the operating conditions used. 展开更多
关键词 Fluid dynamic bubble column reactor residue upgrading technology trays.
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