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一种多模块微流控平台,用于使用直流偏置交流电动技术对水溶性离子进行连续预浓缩,并从水包油(O/W)乳液中分离油滴。

A multi-module microfluidic platform for continuous pre-concentration of water-soluble ions and separation of oil droplets from oil-in-water (O/W) emulsions using a DC-biased AC electrokinetic technique.

作者信息

Das Dhiman, Phan Dinh-Tuan, Zhao Yugang, Kang Yuejun, Chan Vincent, Yang Chun

机构信息

School of Chemical and Biomedical Engineering, Nanyang Technological University, Singapore.

School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore.

出版信息

Electrophoresis. 2017 Mar;38(5):645-652. doi: 10.1002/elps.201600477. Epub 2017 Jan 13.

Abstract

A novel continuous flow microfluidic platform specifically designed for environmental monitoring of O/W emulsions during an aftermath of oil spills is reported herein. Ionized polycyclic aromatic hydrocarbons which are toxic are readily released from crude oil to the surrounding water phase through the smaller oil droplets with enhanced surface area. Hence, a multi-module microfluidic device is fabricated to form ion enrichment zones in the water phase of O/W emulsions for the ease of detection and to separate micron-sized oil droplets from the O/W emulsions. Fluorescein ions in the water phase are used to simulate the presence of these toxic ions in the O/W emulsion. A DC-biased AC electric field is employed in both modules. In the first module, a nanoporous Nafion membrane is used for activating the concentration polarization effect on the fluorescein ions, resulting in the formation of stable ion enrichment zones in the water phase of the emulsion. A 35.6% amplification of the fluorescent signal is achieved in the ion enrichment zone; corresponding to 100% enrichment of the fluorescent dye concentration. In this module, the main inlet is split into two channels by using a Y-junction so that there are two outlets for the oil droplets. The second module located downstream of the first module consists of two oil droplet entrapment zones at two outlets. By switching on the appropriate electrodes, either one of the two oil droplet entrapment zones can be activated and the droplets can be blocked in the corresponding outlet.

摘要

本文报道了一种专门设计用于在石油泄漏后对水包油乳液进行环境监测的新型连续流微流控平台。有毒的离子化多环芳烃很容易通过具有更大表面积的较小油滴从原油释放到周围水相中。因此,制造了一种多模块微流控装置,以在水包油乳液的水相中形成离子富集区,便于检测,并从水包油乳液中分离微米级油滴。水相中的荧光素离子用于模拟水包油乳液中这些有毒离子的存在。两个模块均采用直流偏置交流电场。在第一个模块中,使用纳米多孔纳滤膜激活对荧光素离子的浓度极化效应,从而在乳液的水相中形成稳定的离子富集区。在离子富集区实现了荧光信号35.6%的放大;对应于荧光染料浓度100%的富集。在该模块中,主入口通过Y形接头分成两个通道,因此油滴有两个出口。位于第一个模块下游的第二个模块在两个出口处有两个油滴截留区。通过开启适当的电极,可以激活两个油滴截留区中的任意一个,油滴可以被阻挡在相应的出口处。

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