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Precise Wettability Characterization of Carbonate Rocks To Evaluate Oil Recovery Using Surfactant-Based Nanofluids

机译:碳酸盐岩的精确润湿性表征,以评估基于表面活性剂的纳米流体的采油率

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摘要

Free energy of nanoparticles can increase the surface activity at the solid/oil/liquid contact line and remove oil through the disjoining pressure gradient mechanism. Surfactants can also remove oil mainly by reducing interfacial tension, although raising economic concerns as a result of their adsorption on the rock surface. Introduction of nanoparticles to surfactant solutions seemed to be more prominent in improving the wettability than reducing the interfacial tension, which could offer an opportunity to develop cost-effective chemical flooding agents to enhance oil recovery in carbonate reservoirs. However, characterization of wettability alteration using contact angles typically fails in providing consistent results. In this study, the dual-drop-dual-crystal technique was employed to measure precise and reproducible dynamic contact angles and was supported by relative permeability curves generated by coreflood experiments to evaluate the wettability alteration performance of silica nanoparticles combined with both effective and ineffective anionic surfactants at both ambient and high-pressure, high-temperature conditions. Adding nanoparticles to surfactants was seen to change the wettability of the carbonate rocks from strongly oil-wet to weakly oil-wet and intermediate-wet conditions (e.g., change in the advancing contact angle from 167 degrees to 98 degrees), which improved the oil recovery (up to 93% of the original oil in place) and reduced the residual oil saturation, without having to significantly reduce the interfacial tension (only 1 or 2 orders of magnitude). Reduction of the surfactant concentration in the combination did not significantly hinder the wettability alteration performance, showing the ability of nanoparticles to compensate for surfactants. Therefore, the combination of nanoparticles and low-cost dilute surfactants can be tuned to provide economically appealing chemical flooding agents to enhance oil recovery.
机译:纳米粒子的自由能可以增加固/油/液接触线的表面活性,并通过分离的压力梯度机制去除油。表面活性剂还可以主要通过降低界面张力来除去油,尽管由于其在岩石表面的吸附而引起经济上的担忧。将纳米颗粒引入表面活性剂溶液似乎在改善润湿性方面比降低界面张力更为突出,这可以为开发具有成本效益的化学驱油剂提供机会,以提高碳酸盐岩油藏的采收率。然而,使用接触角表征润湿性改变通常无法提供一致的结果。在这项研究中,采用双滴双晶体技术来测量精确和可再现的动态接触角,并得到岩心驱替实验产生的相对渗透率曲线的支持,以评估二氧化硅纳米粒子与有效和无效阴离子的润湿性变化性能在环境和高压高温条件下的表面活性剂。在表面活性剂中添加纳米颗粒可将碳酸盐岩石的润湿性从强油润湿改变为弱油润湿和中等润湿条件(例如,前进接触角从167度更改为98度),从而改善了油质。回收率(最高到位原始油的93%)并降低了剩余油饱和度,而不必显着降低界面张力(仅1或2个数量级)。组合物中表面活性剂浓度的降低并未显着阻碍润湿性改变性能,显示出纳米颗粒补偿表面活性剂的能力。因此,可以调整纳米颗粒和低成本稀表面活性剂的组合,以提供经济上有吸引力的化学驱油剂,以提高采油率。

著录项

  • 来源
    《Energy & fuels》 |2019年第9期|8289-8301|共13页
  • 作者

    Haeri Foad; Rao Dandina N.;

  • 作者单位

    Louisiana State Univ Craft & Hawkins Dept Petr Engn 3207 Patrick F Taylor Hall Baton Rouge LA 70803 USA;

  • 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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