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首页> 外文期刊>Journal of Colloid and Interface Science >The importance of lipophobicity in surfactants: Methods for measuring lipophobicity and its effect on the properties of two types of nonionic surfactant
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The importance of lipophobicity in surfactants: Methods for measuring lipophobicity and its effect on the properties of two types of nonionic surfactant

机译:疏油性在表面活性剂中的重要性:疏油性的测量方法及其对两种非离子表面活性剂性能的影响

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摘要

In researching the properties of surfactants, lipophobicity is an important consideration. Increasing surfactant lipophobicity corresponds to a decrease in the saturation concentration of a singly dispersed surfactant in oil, i.e., a decrease in the critical micelle concentration in oil (CMC(oil)). This, in turn, is the crucial property ill discussing the efficiency of a surfactant. Lipophobicity is influenced by the structure and length of the hydrophilic moiety of the surfactant. Surfactants that consist of -OH or C=O groups are effective for use in both aliphatic and aromatic hydrocarbon-rich systems because they are highly lipophobic and of a compact size and function independent of temperature. These characteristics are also reflected in their phase behavior. Phase diagrams illustrate the following properties: temperature independence; strong absorption at the water-oil interface and efficient action even with a very small amount of surfactant with a low CMC; high solubilization of water and oil into an aggregated surfactant solution phase. Through phase diagrams, the CMC(oil) of R10EO8 was obtained and the result used to compare the many different characteristics of the more typical oxyethylene nonionic surfactants with the new polyglyceryl nonionic surfactants. (c) 2005 Elsevier Inc. All rights reserved.
机译:在研究表面活性剂的性质时,疏脂性是重要的考虑因素。表面活性剂的疏油性增加对应于油中单分散的表面活性剂的饱和浓度的降低,即油中的临界胶束浓度(CMC(油))的降低。反过来,这是讨论表面活性剂效率的关键特性。疏油性受到表面活性剂亲水部分的结构和长度的影响。由-OH或C = O基团组成的表面活性剂可有效用于富含脂肪族和芳香族烃的体系中,因为它们具有很高的疏脂性,紧凑的尺寸和功能,与温度无关。这些特性也反映在它们的相行为中。相图说明了以下特性:温度无关性;即使在少量表面活性剂和低CMC的情况下,在水-油界面上的吸收能力强,并具有有效的作用;将水和油高度溶解为聚集的表面活性剂溶液相。通过相图,获得了R10EO8的CMC(油),并将结果用于比较更典型的氧化乙烯非离子表面活性剂和新型聚甘油非离子表面活性剂的许多不同特性。 (c)2005 Elsevier Inc.保留所有权利。

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