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首页> 外文期刊>Chemical Engineering Communications >Determination of the Liquid Hold-up Volume and the Interface Radius of an Annular Centrifugal Contactor using the Liquid-Fast-Separation Method
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Determination of the Liquid Hold-up Volume and the Interface Radius of an Annular Centrifugal Contactor using the Liquid-Fast-Separation Method

机译:液相快速分离法测定环形离心接触器的持液量和界面半径

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摘要

Annular centrifugal contactors (ACCs), which use centrifugal force to separate the dispersion of two immiscible liquids of different densities, have been utilized in many industrial fields, such as the petroleum, hydrometallurgy, wastewater treatment, pharmaceutical processing, protein extraction, enantioselective chemical separation, biodiesel synthesis, and nuclear industries. Detailed hydrodynamic information, such as the liquid hold-up volume and the interface radius, is very important for successful design and operation of ACCs. A new method, namely, the liquid-fast-separation method, was developed to (1) obtain the parameters of the liquid hold-up volume, the actual phase ratio (aqueous phase/organic phase, a/o) of two phases in the mixing zone, and the interface radius, and (2) investigate the effects of the rotor speed, the total flow rate, the flow ratio (a/o), and the diameter of the heavy phase weir on these parameters. The experimental results indicated that the parameters of the liquid hold-up volume, the actual phase ratio (a/o) of two phases in the mixing zone, and the interface radius could be obtained using the liquid-fast-separation method. Moreover, the effects of the rotor speed, the total flow rate, the flow ratio (a/o), and the diameter of the heavy phase weir on these parameters could also be obtained. These results provide a more complete understanding of the fluid flow in ACCs to enable further advancements in their design and operation.
机译:环形离心接触器(ACC)利用离心力分离两种不同密度的不混溶液体的分散体,已在许多工业领域得到了应用,例如石油,湿法冶金,废水处理,制药加工,蛋白质提取,对映选择性化学分离,生物柴油合成和核工业。详细的流体力学信息,例如液体滞留量和界面半径,对于成功设计和操作ACC非常重要。开发了一种新的方法,即液体快速分离方法,用于(1)获得液体滞留体积的参数,液体中两相的实际相比(水相/有机相,a / o)。 (2)研究转子转速,总流量,流量比(a / o)和重相堰的直径对这些参数的影响。实验结果表明,采用固液分离技术可以得到固液体积参数,混合区两相的实际相比(a / o)和界面半径。此外,还可以获得转子速度,总流量,流量比(a / o)和重相堰的直径对这些参数的影响。这些结果提供了对ACC中流体流动的更完整的了解,从而可以进一步改进其设计和操作。

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