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Feasibility of Surfactant-Free Supported Emulsion Liquid Membrane Extraction

机译:无表面活性剂负载的乳液液膜萃取的可行性

摘要

Supported emulsion liquid membrane (SELM) is an effective means to conduct liquid-liquid extraction. SELM extraction is particularly attractive for separation tasks in the microgravity environment where density difference between the solvent and the internal phase of the emulsion is inconsequential and a stable dispersion can be maintained without surfactant. In this research, dispersed two-phase flow in SELM extraction is modeled using the Lagrangian method. The results show that SELM extraction process in the microgravity environment can be simulated on earth by matching the density of the solvent and the stripping phase. Feasibility of surfactant-free SELM (SFSELM) extraction is assessed by studying the coalescence behavior of the internal phase in the absence of the surfactant. Although the contacting area between the solvent and the internal phase in SFSELM extraction is significantly less than the area provided by regular emulsion due to drop coalescence, it is comparable to the area provided by a typical hollow-fiber membrane. Thus, the stripping process is highly unlikely to become the rate-limiting step in SFSELM extraction. SFSELM remains an effective way to achieve simultaneous extraction and stripping and is able to eliminate the equilibrium limitation in the typical solvent extraction processes. The SFSELM design is similar to the supported liquid membrane design in some aspects.
机译:支撑乳液液膜(SELM)是进行液液萃取的有效手段。 SELM萃取对于微重力环境中的分离任务特别有吸引力,在微重力环境中,溶剂和乳液内相之间的密度差无关紧要,无需表面活性剂即可保持稳定的分散性。在这项研究中,使用拉格朗日方法对SELM提取中的分散两相流进行建模。结果表明,通过匹配溶剂的密度和汽提相,可以在地球上模拟微重力环境中的SELM萃取过程。通过研究在不存在表面活性剂的情况下内部相的聚结行为,可以评估无表面活性剂SELM(SFSELM)萃取的可行性。尽管由于液滴聚结,SFSELM萃取中溶剂和内相之间的接触面积明显小于常规乳液所提供的面积,但它与典型的中空纤维膜所提供的面积相当。因此,剥离工艺极不可能成为SFSELM提取中的限速步骤。 SFSELM仍然是实现同时萃取和汽提的有效方法,并且能够消除典型溶剂萃取过程中的平衡限制。 SFSELM设计在某些方面类似于支持的液膜设计。

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