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Foaming behavior of fluorocarbon surfactant used in fire-fighting: The importance of viscosity and self-assembly structure

机译:消防中使用的氟碳表面活性剂的发泡行为:粘度和自组装结构的重要性

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In this work, we systematically investigated the foaming behavior of a zwitterionic fluorocarbon surfactant (FC1157) used in fire-fighting. Two different foaming methods were used to generate foam, and the foaming behaviors of the fluorocarbon surfactant and typical hydrocarbon surfactants were compared. Multiscale approaches including cryogenic-transmission electron microscopy (cryo-TEM), surface tension measurements, viscosity and turbidity measurements were employed. Our results revealed that the foaming behavior of FC1157 is different from that of the hydrocarbon surfactants, which is not only related to the surfactant adsorption dynamics but also to the solution viscosity. We confirmed that the increased viscosity leads to a decrease in foaming ability and FC1157 is the only surfactant which exhibits viscous behavior in solution. The viscosity change is due to the variation in solution turbidity which comes from the formation of large aggregates in bulk. Cryo-TEM experiments indicated that FC1157 molecules tend to self-assemble in solution into vesicles. The presence of the vesicle phase strongly affects the solution viscosity and thus the foaming ability, which is different from that observed in the systems containing hydrocarbon surfactants. This study provided insight into the basic factors affecting the foaming behavior of the fluorocarbon surfactant used in fire-fighting, highlighting the crucial role of viscosity and self-assembly structure in determining the foaming behavior. (C) 2020 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们系统地研究了消防用两性离子氟碳表面活性剂(FC1157)的发泡行为。采用两种不同的发泡方法制备泡沫,并比较了氟碳表面活性剂和典型烃类表面活性剂的发泡行为。采用了包括低温透射电子显微镜(cryo TEM)、表面张力测量、粘度和浊度测量在内的多尺度方法。结果表明,FC1157的起泡行为与烃类表面活性剂不同,这不仅与表面活性剂的吸附动力学有关,还与溶液粘度有关。我们证实,粘度增加导致起泡能力降低,FC1157是唯一在溶液中表现出粘性行为的表面活性剂。粘度的变化是由于溶液浑浊度的变化,浑浊度是由大块大团聚体的形成引起的。低温透射电镜实验表明,FC1157分子在溶液中倾向于自组装成囊泡。囊泡相的存在强烈影响溶液粘度,从而影响起泡能力,这与在含有碳氢化合物表面活性剂的系统中观察到的情况不同。本研究深入了解了影响消防用氟碳表面活性剂发泡行为的基本因素,强调了粘度和自组装结构在决定发泡行为中的关键作用。(C) 2020爱思唯尔B.V.版权所有。

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