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基于径迹蚀刻膜的液-液膜接触器中的界面稳定性

Interphase Surface Stability in Liquid-Liquid Membrane Contactors Based on Track-Etched Membranes.

作者信息

Bazhenov Stepan, Kristavchuk Olga, Kostyanaya Margarita, Belogorlov Anton, Ashimov Ruslan, Apel Pavel

机构信息

A.V. Topchiev Institute of Petrochemical Synthesis, Russian Academy of Sciences, 119991 Moscow, Russia.

Flerov Laboratory of Nuclear Reactions, Joint Institute for Nuclear Research, 141980 Dubna, Russia.

出版信息

Membranes (Basel). 2021 Nov 30;11(12):949. doi: 10.3390/membranes11120949.

Abstract

A promising solution for the implementation of extraction processes is liquid-liquid membrane contactors. The transfer of the target component from one immiscible liquid to another is carried out inside membrane pores. For the first time, highly asymmetric track-etched membranes made of polyethylene terephthalate (PET) of the same thickness but with different pore diameters (12.5-19 nm on one side and hundreds of nanometers on the other side) were studied in the liquid-liquid membrane contactor. For analysis of the liquid-liquid interface stability, two systems widely diverging in the interfacial tension value were used: water-pentanol and water-hexadecane. The interface stability was investigated depending on the following process parameters: the porous structure, the location of the asymmetric membrane in the contactor, the velocities of liquids, and the pressure drop between them. It was shown that the stability of the interface increases with decreasing pore size. Furthermore, it is preferable to supply the aqueous phase from the side of the asymmetric membrane with the larger pore size. The asymmetry of the porous structure of the membrane makes it possible to increase the range of pressure drop values between the phases by at least two times (from 5 to 10 kPa), which does not lead to mutual dispersion of the liquids. The liquid-liquid contactor based on the asymmetric track-etched membranes allows for the extraction of impurities from the organic phase into the aqueous phase by using a 1% solution of acetone in hexadecane as an example.

摘要

液液膜接触器是实现萃取过程的一种很有前景的解决方案。目标组分从一种互不相溶的液体转移到另一种液体是在膜孔内进行的。首次在液液膜接触器中研究了由相同厚度但孔径不同(一侧为12.5 - 19纳米,另一侧为数百纳米)的聚对苯二甲酸乙二醇酯(PET)制成的高度不对称径迹蚀刻膜。为了分析液液界面稳定性,使用了两种界面张力值差异很大的体系:水 - 戊醇和水 - 十六烷。根据以下工艺参数研究了界面稳定性:多孔结构、不对称膜在接触器中的位置、液体流速以及它们之间的压降。结果表明,界面稳定性随着孔径减小而增加。此外,从不对称膜孔径较大的一侧供应水相更可取。膜的多孔结构不对称使得相之间的压降值范围至少增加两倍(从5到10千帕),而不会导致液体相互分散。以十六烷中1%的丙酮溶液为例,基于不对称径迹蚀刻膜的液液接触器能够将有机相中的杂质萃取到水相中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a51/8703572/2c8a5c0f6e66/membranes-11-00949-g002.jpg

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