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首页> 外文期刊>Energy & fuels >Anionic/Nonionic Surfactant Mixture for Enhanced Oil Recovery through the Investigation of Adsorption, Interfacial, Rheological, and Rock Wetting Characteristics
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Anionic/Nonionic Surfactant Mixture for Enhanced Oil Recovery through the Investigation of Adsorption, Interfacial, Rheological, and Rock Wetting Characteristics

机译:阴离子/非离子表面活性剂混合物通过调查吸附,界面,流变和岩石润湿特性来提高溢油

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摘要

Surfactant adsorption is a major problem encountered with the surfactant polymer flooding. A lot of additives have been used in this regard to tackle this problem. In the present study, a mixture of a nonionic and an anionic surfactant was used to investigate its effect on the various aspects of the surfactant polymer flooding. The effect of temperature and the nonionic surfactant concentration on the critical micelle concentration of the anionic surfactant was explored. The adsorption behavior of the surfactant mixture on the sand particles was explored by comparing the initial and final concentrations of the surfactant mixture. The adsorption data were fitted in the different adsorption isotherms (Langmuir, Freundlich, and Temkin). The interfacial property and the rock wetting characteristics of the surfactant mixture were investigated by measuring the surface tension and contact angle, respectively. Next, the viscosity of the chemical slug (surfactant and polymer) was analyzed at different temperatures. The viscosity results were fitted in the power law model to understand the fluid flow behavior. Finally, the sand pack flooding experiments were performed using the chemical slug composed of a surfactant mixture and an industrial-grade polymer. In all the experiments, the binary surfactant mixture outperforms the individual surfactants and efficiently reduced the surfactant adsorption by 63%. Also, the binary surfactant mixture achieved an ultralow interfacial tension value of 0.0097 mN/m. The chemical slug composed of the binary surfactant and polymer was able to recover up to 76% of the total oil.
机译:表面活性剂吸附是表面活性剂聚合物泛滥遇到的主要问题。在这方面已经使用了许多添加剂来解决这个问题。在本研究中,使用非离子和阴离子表面活性剂的混合物来研究其对表面活性剂聚合物泛滥的各个方面的影响。探讨了温度和非离子表面活性剂浓度对阴离子表面活性剂的临界胶束浓度的影响。通过比较表面活性剂混合物的初始和最终浓度,探讨了表面活性剂混合物在砂颗粒上的吸附行为。吸附数据适用于不同的吸附等温(Langmuir,Freundlich和Temkin)。通过测量表面张力和接触角来研究表面活性剂混合物的界面性质和岩石润湿特性。接下来,在不同温度下分析化学块(表面活性剂和聚合物)的粘度。粘度结果拟合在电力法模型中以了解流体流动行为。最后,使用由表面活性剂混合物和工业级聚合物组成的化学块进行砂包泛洪实验。在所有实验中,二元表面活性剂混合物优于各个表面活性剂,并有效地将表面活性剂吸附剂减少63%。此外,二元表面活性剂混合物达到0.0097mN / m的超级界面张力值。由二元表面活性剂和聚合物组成的化学裂缝能够恢复高达总油油的76%。

著录项

  • 来源
    《Energy & fuels 》 |2021年第4期| 3065-3078| 共14页
  • 作者单位

    Department of Petroleum Engineering and Geological Sciences Rajiv Gandhi Institute of Petroleum Technology;

    Department of Petroleum Engineering and Geological Sciences Rajiv Gandhi Institute of Petroleum Technology;

    Enhanced Oil Recovery Laboratory Department of Petroleum Engineering Indian Institute of Technology (ISM);

    Department of Petroleum Engineering and Geological Sciences Rajiv Gandhi Institute of Petroleum Technology;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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