Tetrapropylammonium Surfactants as Micellar Modifiers for Enhanced Oil Recovery Application

Tretya Ardyani, A. Mohamed, S. A. Bakar
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引用次数: 0

Abstract

The article addresses an interesting yet unexplored issue in the development of surfactants for microemulsion stabilisation: the role of surfactant headgroup modification to tune the surfactant performances in CO2,water, and cyclohexane. The aqueous properties, and phase behaviour of novel tetrapropylammonum (TPA) surfactants is described. For comparison purposes, the related sodium surfactant (Na-AOT, Na-AOT4, and Na-TC14) are also used to form microemulsions. Observation on the surfactant aqueous properties revealed that the swapping into TPA does not significantly increases the effectiveness of the surfactant in lowering the surface air-water (a/w) tension. The introduction of bulky TPA counterions to normal sulfosuccinate surfactant generally leads to a transition from spherical micellar to extended sheet-like micellar aggregates in water. All in all, the results point minor effect on the headgroup structure modification towards the compatibility of surfactant with CO2.
四丙基铵表面活性剂胶束改性剂在提高原油采收率中的应用
本文解决了微乳液稳定表面活性剂发展中一个有趣但尚未探索的问题:表面活性剂头基改性在CO2,水和环己烷中调整表面活性剂性能的作用。介绍了新型四丙基铵(TPA)表面活性剂的水性质和相行为。为了比较,还使用相关的钠表面活性剂(Na-AOT、na - ao4和Na-TC14)形成微乳。对表面活性剂的水性能观察表明,交换到TPA后,表面活性剂降低表面空气-水(a/w)张力的效果并没有显著提高。将大体积的TPA反离子引入正常的琥珀磺酸盐表面活性剂通常会导致水中从球形胶束向扩展的片状胶束聚集体转变。综上所述,结果表明头基结构的改性对表面活性剂与CO2的相容性影响较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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11
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12 weeks
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