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微流控法原位测量乳液的界面张力。

Measuring Interfacial Tension of Emulsions in Situ by Microfluidics.

机构信息

Dipartimento di Ingegneria Chimica, dei Materiali e della Produzione Industriale , Università di Napoli Federico II , Napoli , Italy.

CEINGE Biotecnologie avanzate, Napoli , Italy.

出版信息

Langmuir. 2018 May 1;34(17):4991-4997. doi: 10.1021/acs.langmuir.8b00208. Epub 2018 Apr 17.

Abstract

Interfacial tension is a key parameter affecting industrially relevant properties of emulsions, such as morphology and stability. Although several methods are available to measure interfacial tension, they are based on generation of droplets starting from separate emulsion components and cannot directly probe the interfacial tension of an emulsion as such. Here, a novel microfluidic tensiometry device to measure interfacial tension of a water-in-oil emulsion in situ as a function of surfactant concentration is presented. In our approach, interfacial tension is obtained from a quantitative analysis of the deformation of individual emulsion droplets under steady state shear flow in microfluidic channels. The technique is validated by comparing the results with experimental data obtained by the pendant drop method in a broad range of interfacial tension values. A very good agreement is found, and an estimate of the surfactant critical micellar concentration (CMC) is also obtained. The proposed microfluidic setup can be used even at high surfactant concentrations, where the measurement is made more challenging by sample viscoelasticity, thus providing a powerful tool to determine the interfacial tension of complex systems in an extended concentration range. The technique could be also used for in-line monitoring of emulsion processing.

摘要

界面张力是影响乳液工业相关性质的关键参数,例如形态和稳定性。尽管有几种方法可用于测量界面张力,但它们都是基于从单独的乳液成分生成液滴,而不能直接探测乳液本身的界面张力。本文提出了一种新型微流控张力仪,可现场原位测量油包水乳液的界面张力,作为表面活性剂浓度的函数。在我们的方法中,通过对微流道中稳态剪切流下单个乳液液滴变形的定量分析来获得界面张力。该技术通过与在广泛的界面张力值范围内通过悬滴法获得的实验数据进行比较来验证。发现两者非常吻合,还可以估算出表面活性剂的临界胶束浓度(CMC)。即使在表面活性剂浓度较高的情况下,也可以使用所提出的微流路装置,因为样品的粘弹性会使测量更具挑战性,从而为在扩展的浓度范围内确定复杂体系的界面张力提供了强大的工具。该技术还可用于乳液加工的在线监测。

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