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Flooding performance evaluation of alkyl aryl sulfonate in various alkaline environments

机译:各种碱性环境下烷基芳基磺酸盐的驱油性能评估

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摘要

Alkaline-Surfactant-Polymer (ASP) flooding is an efficient chemical enhanced oil recovery (EOR) method gaining popularity in the industry. In this paper, the characteristics of three flooding systems with alkyl aryl sulfonate surfactants and a weak alkali concentration, strong alkali concentration and no alkali concentration were investigated. The emulsification, interfacial tension, viscosity, stability, adsorption resistance as well as the oil displacement effect for the flooding systems and simulated oil of the fourth plant of the Daqing Oilfield were measured. The results show that the three alkyl aryl sulphonates surfactants have different emulsification indexes with the weak and strong alkali concentrations possessing the best and worst indexes at 67.00% and 55.17% respectively, and the combination of surfactant and no alkali concentration with an emulsification index of 63.03%. The interfacial tension between the three flooding systems and the simulated oil of the fourth plant of Daqing Oilfield gets as low as 10−3 mN/m, and reduces as far as 10-4mN/m in certain points detected, all with good anti-dilution performance. In terms of interfacial tension stability, the three flooding systems are seen to reach ultra-low interfacial tension within 90 days. For viscosity stability, the addition of a strong alkali and a weak alkali further hydrolyzes the polymer, leading to an initial rise in viscosity and viscosity retention rates above 80%. In terms of adsorption resistance, ultra-low interfacial tension occurs adsorption is reduced by five times for the strong and weak alkali systems, and reduced by four times for the alkali-free system. These results show that all three combination flooding systems have good adsorption resistance. In the evaluation of oil displacement effect, the average chemical flooding recovery rate (33.83%) of the weak alkali-surfactant-polymer (ASP) system is nearly three percent higher (31.34%) than that of the surfactant-polymer (SP) system, and over seven percent higher (26.71%) than that of the strong ASP system.
机译:碱性-表面活性剂-聚合物(ASP)驱油是一种有效的化学增强油采收率(EOR)方法,在业界广受欢迎。本文研究了三种烷基芳基磺酸盐表面活性剂驱油体系的特征,弱碱浓度,强碱浓度和无碱浓度。测量了大庆油田第四厂驱油体系和模拟油的乳化,界面张力,粘度,稳定性,抗吸附性以及驱油效果。结果表明,三种烷基芳基磺酸盐表面活性剂的乳化指数不同,弱,强碱浓度的最佳和最差指标分别为67.00%和55.17%,表面活性剂和无碱组合的乳化指数为63.03。 %。三驱系统与大庆油田第四厂模拟油之间的界面张力低至10 −3 mN / m,降低至10 -4 mN / m,均具有良好的抗稀释性能。就界面张力稳定性而言,可以看到这三种驱油体系在90天内达到了超低界面张力。为了获得粘度稳定性,加入强碱和弱碱会进一步水解聚合物,导致粘度最初提高,粘度保持率超过80%。就吸附阻力而言,发生超低界面张力时,强碱体系和弱碱体系的吸附量降低五倍,而无碱体系的吸附量降低四倍。这些结果表明,所有三种组合驱油系统均具有良好的吸附阻力。在评价驱油效果时,弱碱性表面活性剂-聚合物(ASP)体系的平均化学驱采收率(33.83%)比表面活性剂-聚合物(SP)体系的平均化学驱采收率高出近3%(31.34%)。 ,并且比强大的ASP系统高出7%(26.71%)。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Lei Yan; Wei Ding;

  • 作者单位
  • 年(卷),期 2012(14),9
  • 年度 2012
  • 页码 e0219627
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
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  • 关键词

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