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Equilibrium and dynamic surface tension in relation to diffusivity and foaming properties: Effects of surfactant type and structure

机译:关于扩散性和发泡性能的平衡和动态表面张力:表面活性剂型和结构的影响

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摘要

The main objectives of this study were to investigate the effects of molecular structure of surfactant on surface properties and foam characteristics and to correlate surface tension to foam properties. Two series of methyl ester sulfonate with different alkyl chain lengths (MESx, x = 14, 16, and 18) and polyoxyethylated dodecyl alcohol with different head group sizes (C12EOn, n = 3, 5, 7, and 9) were measured for equilibrium and dynamic surface tension as well as foamability and foam stability. The equilibrium experimental data were well fitted with the Langmuir adsorption isotherm. The dynamic surface tension data were used to calculate diffusivity values of all studied surfactants by using Word-Tordai equation. The longer the alkyl group of MESx, the lower the diffusivity value. The larger the EO head group size, higher the diffusivity. For both studied surfactant groups, the higher the maximum rate of surface tension reduction, the higher the diffusivity and foaming properties in terms of foamability and foam stability.
机译:本研究的主要目的是研究表面活性剂的分子结构对表面性质和泡沫特性的影响,并将表面张力与泡沫性质相关。用不同的烷基链长度(MESX,X = 14,16和18)和具有不同头部组尺寸的多氧乙基化十二烷基醇(C12001,N = 3,5,7和9)的两系列甲酯磺酸盐进行测量平衡和动态表面张力以及可发泡性和泡沫稳定性。平衡实验数据良好地配有Langmuir吸附等温线。动态表面张力数据用于通过使用Word-Tordai方程计算所有研究的表面活性剂的扩散值。 MESX的烷基越长,扩散值越低。 EO头组大小越大,扩散率越高。对于两种研究的表面活性剂组,表面张力降低的最大速率越高,在发泡性和泡沫稳定性方面的扩散性和发泡性能越高。

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