首页> 外文期刊>Journal of Dispersion Science and Technology >Systematic investigation of the effects of an anionic surface active ionic liquid on the interfacial tension of a water/crude oil system and its application to enhance crude oil recovery
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Systematic investigation of the effects of an anionic surface active ionic liquid on the interfacial tension of a water/crude oil system and its application to enhance crude oil recovery

机译:系统性地研究阴离子表面活性离子液体对水/原油系统界面张力的系统及其应用,以提高原油回收

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摘要

A typical anionic surface active ionic liquid (SAIL), 1-butyl-3-methyl-imidazolium dioctylsulfosuccinate (BMOT), was introduced to chemical enhanced oil recovery. The ability of BMOT to reduce the interfacial tension (IFT) of water/crude oil was evaluated for its potential application in surfactant flooding. Compared with the traditional anionic surfactant AOT and another anionic SAIL 1-butyl-3-methylimidazolium dodecyl sulfate used in the control experiments, the effects of intramolecular electrostatic attraction and size match were employed to interpret the high interfacial activity of BMOT. The effects of salt and temperature on the water/crude oil IFT further verified the proposed mechanisms. Moreover, BMOT exhibited a satisfactory displacement performance to greatly improve the crude oil recovery (12.5% of the initial oil in place) in core flooding tests.
机译:将典型的阴离子表面活性离子液体(帆),1-丁基-3-甲基 - 咪唑鎓二辛基磺酸盐(BMOT)引入化学增强的采油。 评价BMOT减少界面张力(IFT)的水/原油的潜在应用在表面活性剂洪水中的应用。 与传统阴离子表面活性剂AOT和另一种阴离子帆1-丁基-3-甲基咪唑鎓二甲基硫酸钠相比,用于对照实验,使用分子内静电吸引和尺寸匹配的影响来解释BMOT的高界面活性。 盐和温度对水/原油IFT的影响进一步验证了所提出的机制。 此外,BMOT表现出令人满意的位移性能,从而大大改善核心泛滥试验中的原油回收(初始油的12.5%)。

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