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基于超低压电聚结的液滴破乳

Droplet Demulsification Using Ultralow Voltage-Based Electrocoalescence.

作者信息

Srivastava A, Karthick S, Jayaprakash K S, Sen A K

机构信息

Department of Mechanical Engineering, Indian Institute of Technology Madras , Chennai 600036, India.

出版信息

Langmuir. 2018 Jan 30;34(4):1520-1527. doi: 10.1021/acs.langmuir.7b03323. Epub 2018 Jan 17.

Abstract

Demulsification of droplets stabilized with surfactant is very challenging due to their low surface energy. We report ultralow voltage-based electrocoalescence phenomenon for the demulsification of aqueous droplets with an aqueous stream. In the absence of electric field, due to the disjoining pressure resulting from the tail-tail interaction between the surfactant molecules present on the aqueous droplets and interface, coalescence of aqueous droplets with the aqueous stream is prevented. However, above a critical electric field, the electrical stress overcomes the disjoining pressure, thus leading to the droplet coalescence. The influence of surfactant concentration, droplet diameter, and velocity on the electrocoalescence phenomena is studied. The macroscopic contact between the aqueous droplet with the aqueous stream enables droplet coalescence at much lower voltage (10 to 90 V), which is at least two orders of magnitude smaller than voltages used in prior works (1.0 to 3.0 kV). The electrocoalescence phenomena is used for the extraction of microparticles encapsulated in aqueous droplets into the aqueous stream and size-based selective demulsification. A new paradigm of droplet electrocoalescence and content extraction is presented that would find significant applications in chemistry and biology.

摘要

用表面活性剂稳定的液滴的破乳极具挑战性,因为它们的表面能很低。我们报道了基于超低压的电聚结现象,用于使水流中的水滴破乳。在没有电场的情况下,由于水滴和界面上存在的表面活性剂分子之间的尾-尾相互作用产生的分离压力,水滴与水流的聚结受到阻碍。然而,在临界电场以上,电应力克服了分离压力,从而导致液滴聚结。研究了表面活性剂浓度、液滴直径和流速对电聚结现象的影响。水滴与水流之间的宏观接触能够在低得多的电压(10至90伏)下实现液滴聚结,这比先前工作中使用的电压(1.0至3.0千伏)至少小两个数量级。电聚结现象用于将包裹在水滴中的微粒提取到水流中以及基于尺寸的选择性破乳。提出了一种液滴电聚结和内容物提取的新范式,它将在化学和生物学中找到重要应用。

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