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Disruption of Cationic/Anionic Viscoelastic Surfactant Micellar Networks by Hydrocarbon as a Basis of Enhanced Fracturing Fluids Clean-Up

机译:烃的破坏碳酸阳离子/阴离子粘弹性表面活性剂胶束网络作为增强压裂液清理的基础

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摘要

Studies of the effects produced by the solubilization of hydrophobic substances by micellar aggregates in water medium are quite important for applications of viscoelastic surfactant solutions for enhanced oil recovery (EOR), especially in hydraulic fracturing technology. The present paper aims at the investigation of the structural transformations produced by the absorption of an aliphatic hydrocarbon (n-decane) by mixed wormlike micelles of cationic (n-octyltrimethylammonium bromide, C8TAB) and anionic (potassium oleate) surfactants enriched by C8TAB. As a result of contact with a small amount (0.5 wt%) of oil, a highly viscoelastic fluid is transformed to a water-like liquid. By small-angle neutron scattering (SANS) combined with cryo-TEM, it was shown that this is due to the transition of long wormlike micelles with elliptical cross-sections to ellipsoidal microemulsion droplets. The non-spherical shape was attributed to partial segregation of longer- and shorter-tail surfactant molecules inside the surfactant monolayer, providing an optimum curvature for both of them. As a result, the long-chain surfactant could preferably be located in the flatter part of the aggregates and the short-chain surfactant—at the ellipsoid edges with higher curvature. It is proven that the transition proceeds via a co-existence of microemulsion droplets and wormlike micelles, and upon the increase of hydrocarbon content, the size and volume fraction of ellipsoidal microemulsion droplets increase. The internal structure of the droplets was revealed by contrast variation SANS, and it was shown that, despite the excess of the cationic surfactant, the radius of surfactant shell is controlled by the anionic surfactant with longer tail. These findings open a way for optimizing the performance of viscoelastic surfactant fluids by regulating both the mechanical properties of the fluids and their clean-up from the fracture induced by contact with hydrocarbons.
机译:通过胶束聚集体在水介质中溶解疏水物质产生的效果对于增强的采油(EOR)的应用,特别是在液压压裂技术中的应用非常重要。本文旨在通过混合蠕虫纤维素(N-辛基三甲基溴化铵,C8Tab)和阴离子(酸钾)表面活性剂的混合蠕虫纤维素(N-癸烷)和富含C8Tab的表面活性剂的吸收制备的结构变换的研究。由于与少量(0.5wt%)油接触,将高粘弹性流体转化为水状液体。通过小角中子散射(SAN)结合Cryo-TEM,表明这是由于长蜗杆胶束与椭圆形微乳液液滴的椭圆形横截面的过渡。非球形形状归因于表面活性剂单层内部的较长和短尾表面活性剂分子的部分偏析,为它们两者提供最佳曲率。结果,长链表面活性剂可以优选地位于聚集体和短链表面活性剂 - 在椭球边缘的较高曲率的椭圆形边缘中。证明过渡通过微乳液液滴和蠕虫状胶束的共存进行,并且在烃含量的增加时,椭圆微乳液液滴的尺寸和体积分数增加。通过对比度变异SAN显示液滴的内部结构,并且表明,尽管存在过量的阳离子表面活性剂,但是表面活性剂壳的半径由阴离子表面活性剂控制,尾部更长。这些发现通过调节流体的机械性能以及通过与烃接触诱导的骨折来调节流体的机械性能和它们的清理来进行粘弹性表面活性剂流体的性能。

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