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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Mass-Transfer-Controlled Dynamic Interfacial Tension in Microfluidic Emulsification Processes
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Mass-Transfer-Controlled Dynamic Interfacial Tension in Microfluidic Emulsification Processes

机译:微流乳化过程中传质控制的动态界面张力

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摘要

Varied interfacial tension caused by the unsaturated adsorption of surfactants on dripping droplet surfaces is experimentally studied. The mass transfer and adsorption of surfactants, as well as the generation of fresh interfaces, are considered the main factors dominating the surfactant adsorption ratio on droplet surfaces. The diffusion and convective mass transfer of the surfactants are first distinguished by comparing the adsorption depth and the mass flux boundary layer thickness. A characterized mass transfer time is then calculated by introducing an effective diffusion coefficient. A time ratio is furthermore defined by dividing the droplet generation time by the characteristic mass transfer time, t/t(m), in order to compare the rates of surfactant mass transfer and droplet generation. Different control mechanisms for different surfactants are analyzed based on the range of t/t(m) and a criterion time ratio using a simplified characteristic mass transfer time, t(m)*, is finally proposed for predicting the appearance of dynamic interfacial tension.
机译:实验研究了表面活性剂在滴液滴表面上的不饱和吸附所引起的各种界面张力。表面活性剂的传质和吸附以及新鲜界面的产生被认为是决定表面活性剂在液滴表面吸附率的主要因素。首先通过比较吸附深度和质量通量边界层厚度来区分表面活性剂的扩散和对流传质。然后通过引入有效扩散系数来计算特征传质时间。此外,通过将液滴产生时间除以特征传质时间t / t(m)来定义时间比,以便比较表面活性剂传质和液滴产生的速率。最后,基于t / t(m)的范围分析了不同表面活性剂的不同控制机制,最后提出了使用简化的特征传质时间t(m)*的标准时间比,以预测动态界面张力的出现。

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