Universidade de Santiago de Compostela, Santiago de Compostela, Spain.
Rice University, Dept. Chemical & Biomolecular Eng., MS-362, Houston, TX 77005, USA.
J Colloid Interface Sci. 2017 Oct 15;504:404-416. doi: 10.1016/j.jcis.2017.05.102. Epub 2017 May 27.
Chemical flooding with surfactants for reducing oil-brine interfacial tensions (IFTs) to mobilize residual oil trapped by capillary forces has a great potential for Enhanced Oil Recovery (EOR). Surface-active ionic liquids (SAILs) constitute a class of surfactants that has recently been proposed for this application. For the first time, SAILs or their blends with an anionic surfactant are studied by determining equilibrium phase behavior for systems of about unit water-oil ratio at various temperatures. The test fluids were model alkane and aromatic oils, NaCl brine, and synthetic hard seawater (SW). Patterns of microemulsions observed are those of classical phase behavior (Winsor I-III-II transition) known to correlate with low IFTs. The two anionic room-temperature SAILs tested were made from common anionic surfactants by substituting imidazolium or phosphonium cations for sodium. These two anionic and two cationic SAILs were found to have little potential for EOR when tested individually. Thus, also tested were blends of an anionic internal olefin sulfonate (IOS) surfactant with one of the anionic SAILs and both cationic SAILs. Most promising for EOR was the anionic/cationic surfactant blend of IOS with [Cmim]Br in SW. A low equilibrium IFT of ∼2·10mN/m was measured between n-octane and an aqueous solution having the optimal blend ratio for this system at 25°C.
化学驱油用表面活性剂降低油-盐水界面张力(IFT)以驱替被毛管力捕获的残余油具有很大的提高采收率(EOR)潜力。离子液体(SAILs)是一类最近被提议用于此应用的表面活性剂。首次在不同温度下,通过测定约单位油水比的体系的平衡相行为,研究了 SAILs 或其与阴离子表面活性剂的混合物。测试流体为模型烷烃和芳烃油、NaCl 盐水和合成硬海水(SW)。观察到的微乳液模式是经典相行为(Winsor I-III-II 转变)的模式,已知其与低 IFT 相关。所测试的两种室温 SAILs 均由常见的阴离子表面活性剂制成,用咪唑鎓或磷鎓阳离子取代钠离子。当单独测试时,这两种阴离子和两种阳离子 SAILs 对 EOR 的潜力很小。因此,还测试了阴离子内部烯烃磺酸盐(IOS)表面活性剂与一种阴离子 SAILs 和两种阳离子 SAILs 的混合物。在 SW 中,IOS 与[Cmim]Br 的阴离子/阳离子表面活性剂混合物对 EOR 最有前景。在 25°C 时,该体系最佳混合比下,测量到 n-辛烷与水溶液之间的平衡 IFT 约为 2.10mN/m。