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Electrical Resistance Tomography for Gas Holdup in a Gas-Liquid Stirred Tank Reactor

机译:气液搅拌釜反应器中气体滞留的电阻层析成像

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摘要

Gas-Liquid flows in stirred tank reactors (STR) are used in many significant industrial operations such as hydrogenation, absorption, stripping, oxidation, hydrogenation, ozonation, chlorination, fermentation, etc. Gas-Liquid STRs are expected to perform several functions such as mixing, dispersing gas into liquid, mass and heat transfer and reactions. Gas hold up distribution and various flow regimes are the key parameters affecting performance of gas-liquid STRs. Various techniques such as visual analysis, photography, light attenuation, optical probe method are used to understand gas hold-up distribution within stirred tanks. Most of these techniques have some limitations with respect to measurement of gas hold up distribution. Electrical Resistance Tomography (ERT) is an upcoming technique for obtaining both qualitative and quantitative data on multiphase process units non-invasively and non-intrusively. In this work, an attempt was made to establish and validate the ERT technique for characterizing gas-liquid flows in a laboratory scale STR using the Rushton turbine (RT) impeller. ERT was used to study gas holdup and to identify flow regimes. The results were compared with the visual measurements as well as previously published correlations. The effect of gas flow rate, impeller speed on the mean gas holdup is discussed. The methodology and results presented in this work will be useful to effectively apply ERT for characterizing gas-liquid flows in stirred tanks.
机译:搅拌釜反应器(STR)中的气液流被用于许多重要的工业操作中,例如加氢,吸收,汽提,氧化,氢化,臭氧化,氯化,发酵等。气液STR有望实现多种功能,例如混合,将气体分散到液体中,传质和传热以及反应。气体滞留量分布和各种流态是影响气液STR性能的关键参数。各种技术(例如视觉分析,摄影,光衰减,光学探针法)用于了解搅拌罐内气体滞留量的分布。这些技术中的大多数对于气体滞留量分布的测量都有一些限制。电阻层析成像(ERT)是一种即将到来的技术,可用于无创且非侵入式地获取多相过程单元的定性和定量数据。在这项工作中,尝试建立和验证用于使用Rushton涡轮(RT)叶轮在实验室规模STR中表征气液流量的ERT技术。 ERT用于研究气体滞留率并确定流态。将结果与视觉测量结果以及先前发布的相关性进行比较。讨论了气体流速,叶轮速度对平均气体滞留量的影响。这项工作中介绍的方法和结果将有助于有效地将ERT用于表征搅拌釜中气液流动的特性。

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