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Perfectly Wetting Mixtures of Surfactants from Renewable Resources: The Interaction and Synergistic Effects on Adsorption and Micellization

机译:完美润湿可再生资源中的表面活性剂混合物:吸附和胶束化的相互作用和协同效应

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摘要

This paper presents a study of the surface properties of mixtures of surfactants originating from renewable sources, i.e., alkylpolyglucoside (APG), ethoxylated fatty alcohol (AE), and sodium soap (Na soap). The main objective was to optimize the surfactant ratio which produces the highest wetting properties during the analysis of the solution of the individual surfactants, two- and three-component mixtures, and at different pH values. The results showed the existence of a synergistic effect in lowering the interfacial tension, critical micelle concentration and the formation of mixed micelles in selected solutions. We found that best wetting properties were measured for the binary AE:APG mixtures. It has been demonstrated that slightly lower contact angles values were observed on Teflon and glass surfaces for the AE:APG:soap mixtures but the results were obtained for higher concentration of the components. In addition, all studied solutions have very good surface properties in acidic, basic and neural media. However, the AE:soap (molar ratio of 1:2), AE:APG (2:1) and AE:APG:soap (1:1:1) compositions improved their wetting power at pH 7 on the aluminium and glass surfaces, as compared to solutions at other pH values tested (selected Θ values close to zero—perfectly wetting liquids). All described effects detected would allow less surfactant to be used to achieve the maximum capacity of washing, wetting or solubilizing while minimizing costs and demonstrating environmental care.
机译:本文对可再生资源表面活性剂混合物的表面性质进行了研究,这些表面活性剂为烷基聚葡萄糖苷(APG),乙氧基化脂肪醇(AE)和钠皂(Na皂)。主要目的是优化表面活性剂的比例,在分析各种表面活性剂,两组分和三组分混合物的溶液以及在不同的pH值下产生最高的润湿性能。结果显示在降低溶液中的界面张力,临界胶束浓度和混合胶束形成方面存在协同作用。我们发现,对二元AE:APG混合物测量了最佳润湿性能。已经证明,对于AE:APG:肥皂混合物,在特氟隆和玻璃表面上观察到稍低的接触角值,但是对于较高浓度的组分获得了结果。此外,所有研究的溶液在酸性,碱性和神经介质中都具有非常好的表面性能。但是,AE:肥皂(摩尔比为1:2),AE:APG(2:1)和AE:APG:肥皂(1:1:1)组合物在pH值为7时对铝和玻璃表面的润湿能力有所提高与其他测试pH值的溶液相比(选定的Θ值接近零-完全润湿液体)。检测到的所有描述的效果将允许使用更少的表面活性剂,以实现最大的洗涤,润湿或增溶能力,同时将成本降至最低并证明环保。

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