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Experimental Study of Effective Amphiphilic Graphene Oxide Flooding for an Ultralow-Permeability Reservoir

机译:超低渗透油藏有效两亲氧化石墨烯驱油实验研究

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摘要

Current displacing agents for enhanced oil recovery (EOR), i.e., water, gas, foam, and common nanofluid, suffer plenty of problems in ultralow-permeability reservoirs, with a limited oil recovery. A novel agent, amphiphilic graphene oxide (H-GO), is confirmed to be effective in EOR under such unconventional conditions. We present the fundamental mechanisms for the improved performance by H-GO. Specifically, the effectiveness of H-GO is experimentally verified from multiple perspectives, including emulsifying ability, interfacial activity, and wettability alteration action. Experimental observations show that H-GO has excellent emulsifying ability that the amphiphilic Janus nanosheet is inclined to move onto the oil-water interface. Pickering emulsion formed by H-GO and oil, with an average droplet diameter of only 2.66 mu m, is considerably stable, which can be maintained for at least 30 days. Besides, H-GO reduces the oil-water interfacial tension to 0.493 mN/m, 1 order of magnitude lower than that between the common nanoparticle and oil. H-GO shows better wettability alteration efficiency compared to a common nanoparticle. Consistently, micromodel tests show that H-GO gives a promising sweep and displacement efficiency to oil. As a result of these advantages of H-GO, the oil on the rock surface can be separated and form the emulsion or oil zone easily, leading to the incremental recovery of 10.83% using only H-GO (1 mg/mL) in an ultralow-permeability core. The study provides a novel approach for EOR in ultralow-permeability reservoirs. The high performance, convenient operation, and environmental protection make H-GO flooding have great potential for oilfield practice.
机译:当前用于提高油采收率(EOR)的驱替剂,即水,天然气,泡沫和普通的纳米流体,在超低渗透性油藏中存在很多问题,而油采收率有限。在这种非常规条件下,已证实新型试剂两亲氧化石墨烯(H-GO)可有效提高EOR。我们介绍了H-GO改进性能的基本机制。具体而言,H-GO的有效性已从多个角度进行了实验验证,包括乳化能力,界面活性和润湿性改变作用。实验观察表明,H-GO具有优异的乳化能力,两亲性Janus纳米片易于向油水界面移动。由H-GO和油形成的Pickering乳液的平均液滴直径仅为2.66μm,相当稳定,可以保持至少30天。此外,H-GO将油水界面张力降低至0.493 mN / m,比普通纳米粒子与油之间的张力低1个数量级。与普通纳米颗粒相比,H-GO显示出更好的润湿性改变效率。一致地,微模型测试表明,H-GO为油提供了有希望的扫掠和驱油效率。由于H-GO的这些优点,可以分离岩石表面上的油,并轻松形成乳化液或油层,从而仅使用H-GO(1 mg / mL)即可在原油中分离出10.83%的增量油。超低渗透性核心。该研究为超低渗透油藏的EOR提供了一种新方法。高性能,操作方便和环保使H-GO驱油在油田实践中具有巨大潜力。

著录项

  • 来源
    《Energy & fuels》 |2018年第11期|11269-11278|共10页
  • 作者单位

    Yangtze Univ, Coll Petr Engn, Wuhan 430100, Hubei, Peoples R China;

    Yangtze Univ, Coll Petr Engn, Wuhan 430100, Hubei, Peoples R China;

    Yangtze Univ, Coll Petr Engn, Wuhan 430100, Hubei, Peoples R China;

    Changqing Oilfield Co, Res Inst Petr & Dev, Xian 710018, Shaanxi, Peoples R China;

    Peking Univ, Beijing Int Ctr Gas Hydrate, Beijing 100871, Peoples R China;

    Yangtze Univ, Coll Petr Engn, Wuhan 430100, Hubei, Peoples R China;

  • 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
  • 关键词

  • 入库时间 2022-08-18 04:06:39

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