ThAMeS Multiphase, Department of Chemical Engineering, University College London, Torrington Place, London, WC1E 7JE, UK.
ThAMeS Multiphase, Department of Chemical Engineering, University College London, Torrington Place, London, WC1E 7JE, UK.
J Colloid Interface Sci. 2022 Jan;605:204-213. doi: 10.1016/j.jcis.2021.06.178. Epub 2021 Jul 16.
Dynamic interfacial tension was studied experimentally during drop formation in a flow-focusing microchannel. A low viscosity silicone oil (4.6 mPa s) was the continuous phase and a mixture of 48% w/w water and 52% w/w glycerol was the dispersed phase. An anionic (sodium dodecylsulfate, SDS), a cationic (dodecyltrimethylammonium bromide, DTAB) and a non-ionic (Triton™ X-100, TX100) surfactant were added in the dispersed phase, at concentrations below and above the critical micelle concentration (CMC). For SDS and DTAB the drop size against continuous phase flowrate curves initially decreased with surfactant concentration and then collapsed to a single curve at concentrations above CMC. For TX100 the curves only collapsed at surfactant concentrations 8.6 times the CMC. From the collapsed curves a correlation of drop size with capillary number was derived, which was used to calculate the dynamic interfacial tension at times as low as 3 ms. The comparison of the surfactant mass transport and adsorption times to the interface against the drop formation times indicated that surfactant adsorption also contributes to the time required to reach equilibrium interfacial tension. Criteria were proposed for drop formation times to ensure that equilibrium interfacial tension has been reached and does not affect the drop formation.
在流聚焦微通道中形成液滴的过程中,我们进行了动态界面张力的实验研究。连续相为低粘度硅油(4.6 mPa s),分散相为水和甘油的混合物(48% w/w 水和 52% w/w 甘油)。在分散相中添加了阴离子(十二烷基硫酸钠,SDS)、阳离子(十二烷基三甲基溴化铵,DTAB)和非离子(吐温™ X-100,TX100)表面活性剂,其浓度低于和高于临界胶束浓度(CMC)。对于 SDS 和 DTAB,随着表面活性剂浓度的增加,液滴尺寸对连续相流速曲线最初减小,然后在 CMC 以上的浓度下崩溃为单个曲线。对于 TX100,只有在表面活性剂浓度是 CMC 的 8.6 倍时,曲线才会崩溃。从崩溃的曲线中得出了与毛细管数相关的液滴尺寸的相关性,该相关性用于计算低至 3 ms 的动态界面张力。表面活性剂质量传递和吸附时间与界面相对于液滴形成时间的比较表明,表面活性剂吸附也有助于达到平衡界面张力所需的时间。提出了液滴形成时间的标准,以确保达到平衡界面张力,并且不会影响液滴的形成。