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Numbering-up and mass transfer studies of liquid-liquid two-phase microstructured reactors

机译:液液两相微结构化反应器的编号和传质研究

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摘要

Microstructured reactors are known to provide high heat and mass transfer rates for liquid-liquid two-phase systems when used as a single channel. For industrial scale production, scale-up of microstructured reactors is essential to achieve throughput in the required range which is done by numbering-up of a single channel. The important issues are uniform flow distribution and identical slug size in all channels. In the present work, a capillary microstructured reactor is numbered up for six capillaries and the mass transfer performance is investigated for various operating conditions. A cationic surfactant was used to study the effect of interfacial tension on the mass transfer performance. If compared to conventional contactors, the mass transfer coefficients were approximately one order of magnitude higher allowing the process intensification. The results obtained demonstrate the benefits of microstructured reactors and confirm that the throughput of conventional reactors can be achieved.
机译:当用作单通道时,已知微结构反应器为液-液两相系统提供高的传热和传质速率。对于工业规模的生产,微结构化反应器的按比例放大对于在所需范围内实现产量至关重要,这可以通过增加单个通道的数量来实现。重要的问题是所有通道中的流量分布均匀且弹头尺寸相同。在目前的工作中,毛细管微结构化反应器被编号为六个毛细管,并且在各种操作条件下研究了传质性能。使用阳离子表面活性剂来研究界面张力对传质性能的影响。如果与常规接触器相比,传质系数大约高一个数量级,从而可以增强工艺。获得的结果证明了微结构反应器的好处,并证实可以实现常规反应器的生产量。

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