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Water Solubilization Using Nonionic Surfactants from Renewable Sources in Microemulsion Systems

机译:在微乳液系统中使用可再生来源的非离子表面活性剂进行水溶解

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摘要

In this study the effect of temperature, NaCl and oils (hydrocarbons: C8–C16) on the formation and solubilization capacity of the systems of oil/monoacylglycerols (MAG):ethoxylated fatty alcohols (CEO20)/propylene glycol (PG)/water was investigated. The effects of the surfactant mixture on the phase behavior and the concentration of water or oil in the systems were studied at three temperatures (50, 55, 60 °C) and with varied NaCl solutions (0.5; 2; 11%). Electrical conductivity measurement, FTIR spectroscopy and the DSC method were applied to determine the structure and type of the microemulsions formed. The dimension of the microemulsion droplets was characterized by dynamic light scattering. It has been stated that the concentration of CEO20 has a strong influence on the shape and extent of the microemulsion areas. Addition of a nonionic surfactant to the mixture with MAG promotes an increase in the area of microemulsion formation in the phase diagrams, and these areas of isotropic region did not change considerably depending on the temperature, NaCl solution and oil type. It was found that, depending on the concentration of the surfactant mixture, it was possible to obtain U-type microemulsions with dispersed particles size distribution ranging from 25 to 50 nm and consisting of about 30–32% of the water phase in the systems. The conditions under which the microemulsion region was found (electrolyte and temperature—insensitive, comparatively low oil and surfactant concentration) could be highly useful in detergency.
机译:在这项研究中,温度,NaCl和油(碳氢化合物:C8–C16)对油/单酰基甘油(MAG):乙氧基化脂肪醇(CEO20)/丙二醇(PG)/水的体系形成和增溶能力的影响为调查。在三种温度(50、55、60°C)和变化的NaCl溶液(0.5; 2; 11%)下研究了表面活性剂混合物对相行为和系统中水或油浓度的影响。应用电导率测量,FTIR光谱和DSC方法确定形成的微乳液的结构和类型。微乳液液滴的尺寸由动态光散射表征。据指出,CEO20的浓度对微乳液区域的形状和程度具有很大的影响。在相图中向混合物中添加非离子表面活性剂会促进相图中微乳液形成区域的增加,并且各向同性区域的这些区域不会随温度,NaCl溶液和油类类型而发生明显变化。已经发现,根据表面活性剂混合物的浓度,可以获得具有分散的粒径分布范围为25至50nm且由系统中约30%到32%的水相组成的U型微乳液。发现微乳液区域的条件(电解质和温度-不敏感,相对较低的油和表面活性剂浓度)在去污力方面可能非常有用。

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