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Viscoelastic Surfactants with High Salt Tolerance, Fast‐Dissolving Property, and Ultralow Interfacial Tension for Chemical Flooding in Offshore Oilfields

肺表面活性物质 化学 溶解 表面张力 提高采收率 化学工程 十二烷基硫酸钠 卤水 粘弹性 胶束 毛细管数 水溶液 色谱法 有机化学 材料科学 复合材料 热力学 工程类 物理 生物化学
作者
Haiming Fan,Tong Zheng,Haolin Chen,Jun Huang,Zhiyi Wei,Wanli Kang,Caili Dai,Hongbo Zeng
出处
期刊:Journal of Surfactants and Detergents [Wiley]
卷期号:21 (4): 475-488 被引量:20
标识
DOI:10.1002/jsde.12042
摘要

Abstract Injected chemical flooding systems with high salinity tolerance and fast‐dissolving performance are specially required for enhancing oil recovery in offshore oilfields. In this work, a new type of viscoelastic‐surfactant (VES) solution, which meets these criteria, was prepared by simply mixing the zwitterionic surfactant N ‐hexadecyl‐ N , N ‐dimethyl‐3‐ammonio‐1‐propane sulfonate (HDPS) or N ‐octyldecyl‐ N , N ‐dimethyl‐3‐ammonio‐1‐propane sulfonate (ODPS) with anionic surfactants such as sodium dodecyl sulfate (SDS). Various properties of the surfactant system, including viscoelasticity, dissolution properties, reduction of oil/water interfacial tension (IFT), and oil‐displacement efficiency of the mixed surfactant system, have been studied systematically. A rheology study proves that at high salinity, 0.73 wt.% HDPS/SDS‐ and 0.39 wt.% ODPS/SDS‐mixed surfactant systems formed worm‐like micelles with viscosity reaching 42.3 and 23.8 mPa s at a shear rate of 6 s −1 , respectively. Additionally, the HDPS/SDS and ODPS/SDS surfactant mixtures also exhibit a fast‐dissolving property (dissolution time <25 min) in brine. More importantly, those surfactant mixtures can significantly reduce the IFT of oil–water interfaces. As an example, the minimum of dynamic‐IFT (IFT min ) could reach 1.17 × 10 −2 mN m −1 between the Bohai Oilfield crude oil and 0.39 wt.% ODPS/SDS solution. Another interesting finding is that polyelectrolytes such as sodium of polyepoxysuccinic acid can be used as a regulator for adjusting IFT min to an ultralow level (<10 −2 mN m −1 ). Taking advantage of the mobility control and reducing the oil/water IFT of those surfactant mixtures, the VES flooding demonstrates excellent oil‐displacement efficiency, which is close to that of polymer/surfactant flooding or polymer/surfactant/alkali flooding. Our work provides a new type of VES flooding system with excellent performances for chemical flooding in offshore oilfields.
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