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A Model of microemulsion formation and percolation: Experimental validation

机译:微乳液形成和渗滤模型:实验验证

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摘要

Experimental results afford strong support for a previously proposed mathematical model of the formation of a microemulsion system. Water-in-oil microemulsions with various straight chain hydrocarbons as the continuous phase, and nonylphenol ethylene oxide (NP(EO)n) condensates as surfactants were prepared using the titration method. The free energies of the system were determined using the Gibbs equation. Next, the free energy of formation of a single microemulsion droplet was calculated. Free energy value obtained from the titration method showed a high degree of agreement with the free energy predicted by the mathematical model when experimental value for the interfacial tensions at the water/oil interface and bare interface, free energy of formation of the interfacial sheath, natural radius of the microemulsion, flexibility constant of the interfacial sheath, and maximum and minimum radii of the microemulsion were inserted in the appropriate equation. This finding validates our mathematical model, and offers evidence of the important roles played by the positive interfacial tension at the water/oil interface and the flexibility of the interfacial sheath in microemulsion formation and stability.
机译:实验结果为之前提出的微乳液体系形成的数学模型提供了有力的支持。使用滴定法制备了以各种直链烃为连续相,壬基酚环氧乙烷(NP(EO)n)缩合物为表面活性剂的油包水型微乳液。使用吉布斯方程确定系统的自由能。接下来,计算形成单个微乳液液滴的自由能。当在水/油界面和裸界面的界面张力的实验值,界面鞘形成的自由能,自然的,通过滴定法获得的自由能值与数学模型预测的自由能高度吻合。将微乳液的半径,界面鞘的柔韧性常数以及微乳液的最大和最小半径插入适当的方程式中。这一发现验证了我们的数学模型,并提供了证据,证明了水/油界面处的正界面张力以及界面鞘在微乳液形成和稳定性方面的柔韧性起着重要作用。

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