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首页> 外文期刊>Journal of Membrane Science >Mass transfer performance and two-phase flow characteristic in membrane dispersion mini-extractor
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Mass transfer performance and two-phase flow characteristic in membrane dispersion mini-extractor

机译:膜分散微萃取器的传质性能和两相流动特性

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摘要

In this experiment, a new membrane dispersion mini-extractor with a microfiltration membrane as the dispersion media was developed for liquid-liquid extraction processes. The performance of the new extractor was tested in six experimental systems with different dispersed phase media to measure the effects of flow rates on mixing and mass transfer characteristics, as well as the relationship between transmembrane pressure and dispersed phase flow rate. For all systems, the results showed droplet diameter decreasing with an increase of volume flow rate, and higher extraction efficiency due to the increase in specific interfacial area and decrease in diffusion distance. At higher flow rates, the droplet diameter reached a minimum value and the mass transfer efficiency could be as high as 100% with residence time less than 0.2 s. The mini-extractor's capacity reached around 500m(3)/(m(2) h) under the mass transfer efficiency of almost one theory stage. Because of its simple design, low cost production and increased efficiency, the membrane dispersion mini-extractor has potential for widespread industrial extraction process application. (C) 2004 Published by Elsevier B.V.
机译:在该实验中,开发了一种新的以微滤膜为分散介质的膜分散微萃取器,用于液-液萃取过程。在具有不同分散相介质的六个实验系统中测试了新萃取器的性能,以测量流速对混合和传质特性的影响,以及跨膜压力和分散相流速之间的关系。对于所有系统,结果显示液滴直径随着体积流量的增加而减小,并且由于比界面面积的增加和扩散距离的减小而使提取效率更高。在较高的流速下,液滴直径达到最小值,传质效率高达100%,停留时间小于0.2 s。在几乎一个理论阶段的传质效率下,小型萃取器的容量达到了500m(3)/(m(2)h)左右。由于其简单的设计,低成本的生产和更高的效率,膜分散微型萃取器具有广泛的工业萃取工艺应用潜力。 (C)2004由Elsevier B.V.发布

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