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Desorption kinetics of surfactants at fluid interfaces by novel coaxial capillary pendant drop experiments

机译:通过新型同轴毛细管悬垂实验研究流体表面活性剂的解吸动力学

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摘要

Surfactants appear in multiphase fluid systems in which the interface and the adjacent bulk phase have been removed from equilibrium. Here, a new method is described for the measurement of rate constants of desorption of surface-active materials from fluid/fluid interfaces and the extent to which adsorption is reversible: the coaxial capillary pendant drop experimental technique. Kinetic constants are determined by desorption experiments in pendant drops in which the interface adjacent to a surfactant solution is removed from equilibrium by replacing the subphase of the drop with pure water. Further, we demonstrate that although the rate of subphase exchange is comparatively slow with respect to the desorption timescale, it is possible to resolve desorption processes which occur under local equilibrium with the adjacent bulk phase from those that are determined in part by sorption kinetics. Experiments which measure the desorption kinetic coefficient, alpha, using a homologous series of n-alkyl (C-8, C-10, C-12, C-14) dimethyl phosphine oxides are presented.
机译:表面活性剂出现在多相流体系统中,其中界面和相邻的本体相已从平衡中移出。在这里,描述了一种用于测量表面活性物质从流体/流体界面脱附的速率常数以及可逆吸附程度的新方法:同轴毛细管悬垂实验技术。动力学常数由悬垂液滴中的解吸实验确定,其中通过用纯水代替液滴的亚相使与表面活性剂溶液相邻的界面脱离平衡。此外,我们证明,尽管相对于解吸时间尺度而言,子相交换的速度相对较慢,但可以从部分由吸附动力学确定的过程中解析与相邻本体相在局部平衡下发生的解吸过程。提出了使用同系列的正烷基(C-8,C-10,C-12,C-14)二甲基氧化膦测量解吸动力学系数α的实验。

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