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Mass Transfer Enhancement by Gas Injection to Liquid-Liquid Slug Flow in Miniaturized Channels

机译:通过气体注入提高液体在小型通道中的液团流动的传质

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To increase the maximum flow rate that enables the formation of slug flow inminiaturized channels, gas phase slugs are injected in liquid–liquid slug flow to formgas–liquid–liquid slug flow. The effects of the channel size, the void fraction (the ratio ofvolumetric flow rate of gas phase to that of total flow rate), the volume ratio of aqueousphase to organic phase on the flow regime and the mass transfer rate are examined. Theexperimental results show that the region of total flow rate of the liquid phases that forms astable gas–liquid–liquid slug flow increases as high as 200 mL/min with the air injection(void fraction more than 0.1) in a PTFE tube of i.d. 3 mm. If only liquid two phases are used,the maximum total flow rate to form a stable liquid–liquid slug flow is 60 mL/min. The masstransfer rate in gas–liquid–liquid slug flow is also high since the internal circulation flow isenhanced by the increased flow rate. The mass transfer rate is also correlated with the flowvelocity. Through this study, we conclude that the gas–liquid–liquid slug flow is useful inrapid mass transfer operation with a high throughput.
机译:为了增加最大流速,以形成团状流 小型化通道,将气相段塞注入液-液段塞流中以形成 气-液-液段塞流。通道尺寸,空隙率( 气相的体积流量与总流量的比),水的体积比 考察了流态和传质速率之间的有机相转变为有机相的过程。这 实验结果表明,液相的总流速区域形成了 空气注入时,气-液-液团块流量稳定增长,高达200 mL / min (空隙分数大于0.1)在PTFE管中。 3毫米如果仅使用液相两相, 形成稳定的液-液塞流的最大总流速为60 mL / min。质量 气-液-液段塞流中的传输速率也很高,因为内部循环流是 通过增加流速来增强。传质速率也与流量相关 速度。通过这项研究,我们得出结论,气-液-液塞流在 高通量的快速传质操作。

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