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通过胶束化变化,内烯烃磺酸盐表面活性剂与阳离子表面活性剂相互作用时的流变学增强作用。

The Rheological Enhancement of an Internal Olefin Sulphonate Surfactant upon Interactions with Cationic Surfactants by Micellization Changes.

作者信息

Lozada Ana María, Sandoval María Isabel, Mercado Ronald

机构信息

Grupo de Investigación en Fenómenos Interfaciales, Reología y Simulación de Transporte-FIRST, Universidad Industrial de Santander, Bucaramanga 680002, Colombia.

Grupo de Investigación en Recobro Mejorado-GRM, Universidad Industrial de Santander, Bucaramanga 680002, Colombia.

出版信息

Materials (Basel). 2025 Mar 13;18(6):1270. doi: 10.3390/ma18061270.

Abstract

Enhanced oil recovery (EOR) methods traditionally rely on polymer solutions to improve viscosity and elasticity; however, their effectiveness is limited under high-temperature, high-salinity, and high-shear conditions, leading to elevated operational costs. Anionic/cationic formulations have been studied in terms of interfacial tension reduction for EOR applications. This study presents a novel approach to EOR by enhancing the rheological properties of an anionic internal olefin sulfonate surfactant through interactions with cationic surfactants, eliminating the need for polymer molecules. This research demonstrates that cationic surfactants can induce micellization changes, resulting in substantial viscosity enhancement and viscoelasticity development. The effect is found to depend on the hydrocarbon chain length and concentration of the cationic surfactants, with longer chains yielding higher viscosity and more pronounced non-Newtonian behavior. Additionally, this study reveals that the addition of NaCl alters micellar organization, with the order of component additions playing a critical role in rheological performance. This kinetic-dependent micellization behavior, rarely explored in EOR applications, highlights the potential of counterion surfactants as viscosity enhancers in surfactant-based flooding processes. Oscillatory rheology confirms that cationic/anionic surfactant systems in this study exhibit stable viscoelastic behavior, making them potentially more suitable for harsh reservoir environments than polymer-based EOR fluids. These findings open new avenues for the development of cost-effective and tailored surfactant formulations, offering an alternative to polymer solutions under challenging reservoir conditions.

摘要

传统的提高采收率(EOR)方法依赖于聚合物溶液来提高粘度和弹性;然而,在高温、高盐和高剪切条件下,它们的效果有限,导致运营成本上升。针对EOR应用,人们对阴离子/阳离子配方在降低界面张力方面进行了研究。本研究提出了一种新的EOR方法,即通过与阳离子表面活性剂相互作用来增强阴离子内烯烃磺酸盐表面活性剂的流变性能,从而无需聚合物分子。这项研究表明,阳离子表面活性剂可引发胶束化变化,导致粘度大幅提高和粘弹性发展。发现这种效果取决于阳离子表面活性剂的烃链长度和浓度,链长越长,粘度越高,非牛顿行为越明显。此外,本研究还表明,添加氯化钠会改变胶束结构,各组分添加顺序对流变性能起着关键作用。这种与动力学相关的胶束化行为在EOR应用中很少被探索,凸显了反离子表面活性剂在基于表面活性剂的驱油过程中作为粘度增强剂的潜力。振荡流变学证实,本研究中的阳离子/阴离子表面活性剂体系表现出稳定的粘弹性行为,使其在恶劣的油藏环境中可能比基于聚合物的EOR流体更适用。这些发现为开发具有成本效益且量身定制的表面活性剂配方开辟了新途径,为在具有挑战性的油藏条件下替代聚合物溶液提供了一种选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d723/11943612/ef7e5d28149e/materials-18-01270-g001.jpg

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