生物聚合物加入胶束体系的影响

Safia Djedri, D. Le Cerf, A. Boucherit, R. Issaadi
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引用次数: 1

摘要

乳剂配方在各个行业中的重要性正在稳步提高,而它只影响化妆品领域。它现在应用于制药、石油、油漆等领域。表面活性剂和聚合物是乳液(油中水或油中水)配方中最重要的两种添加剂。它们的相互作用显著地改变了这些体系的表面性质和流变性。这些特性的控制已经成为实验室研究人员的主要课题。我们的研究与油田有关,我们打算开发稳定的乳液(微乳液),其界面张力尽可能低,具有适当的流变性能。我们已经能够制备界面张力为10−4 mN /m量级的微乳液,但粘度与水相当[1]。为了改善流变性能,我们开始研究在这些微乳液中加入生物聚合物的影响,以便在保持界面张力值的情况下实现200 mPa范围内的粘度。本文介绍了羟乙基纤维素和羟乙基疏水改性生物聚合物的研究结果,并讨论了这些生物聚合物的引入方式。
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Effect of the Addition of Biopolymers in Micellar Systems
The importance of the formulation of emulsions in the various industries is steadily increasing, while it affected only the area of cosmetics. It is now in the pharmaceutical, petroleum, paint and others. Surfactants and polymers are the two most important additives in the formulation of emulsions (water in oil or oil in water). Their interactions modify significantly the surface properties and rheology of these systems. The control of these properties has become a major sauced of researcher laboratories Our study is related to the petroleum field, where we intend to develop stable emulsions (microemulsion) with interfacial tensions as low as possible with appropriate rheological properties. We have been able to prepare microemulsions with interfacial tensions of the order of 10−4 mN /m but the viscosities were comparable to that of water [1]. To improve the rheological properties, we undertook to study the influence of the addition of the biopolymer in these microemulsions in order to achieve viscosities in the range of 200 mPa in a way to conserve the values of interfacial tension. In this work, we present the results obtained with the following biopolymers hydroxyethyl cellulose and hydroxyethyl hydrophobic modified, discussing particularly the mode of introduction of these biopolymers.
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