Chromatography and oil displacement mechanism of a dispersed particle gel strengthened Alkali/Surfactant/Polymer combination flooding system for enhanced oil recovery

被引:35
|
作者
Varel, Foutou Tsiba [1 ]
Dai, Caili [1 ]
Shaikh, Azizullah [1 ]
Li, Jiaming [1 ]
Sun, Ning [1 ]
Yang, Ning [1 ]
Zhao, Guang [1 ]
机构
[1] China Univ Petr East China, Sch Petr Engn, Qingdao 266580, Shandong, Peoples R China
基金
中国国家自然科学基金;
关键词
Chromatography separation; Novel dispersed particle gel; Interfacial tension (IFT); Displacement mechanism; Enhanced oil recovery; Interaction; Adsorption; WATER-SOLUBLE POLYMER; DEPTH PROFILE CONTROL; HIGH-TEMPERATURE; SILICA NANOPARTICLES; STABILITY; POLYACRYLAMIDE; PERFORMANCE; ASPHALTENES; NANOFLUIDS; FOAM;
D O I
10.1016/j.colsurfa.2020.125642
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In recent years, a newly developed dispersed particle gel (DPG) has attracted significant attention because of its excellent properties and a good application prospect in an enhanced oil recovery process. The preparation method is convenient and easy to scale up for the field application. The dispersed particle gel with sizes ranging from submicron to micron can block the high permeability layers by accumulating in large pore spaces or directly plugging small pore throats. Furthermore, the dispersed particle gels can achieve in-depth profile control due to the elastic deformation and migration into the reservoir's porous media. These characteristics have demonstrated great potential for the dispersed particle gels to strengthen the alkali/surfactant/polymer combination flooding system. The polymers used are the principal sources of viscosity in the system; the surfactant and alkaline produce the synergistic effect by generating the ultralow oil-water interfacial tension. The added dispersed particle gel has a synergistic viscosity increase effect, temperature tolerance, and thermal stability. However, the combined flooding system suffers from the surfactant loss and chromatographic separation that affect the chemical components' synergistic effect for enhanced oil recovery. In this paper, the chromatography separation effects linked to a new method of oil displacement mechanism based on the dispersed particle gel strengthened Alkali/Surfactant/Polymer as a novel combination flooding system was investigated. The addition of dispersed particle gel in the Alkali/Surfactant/Polymer combination flooding system could interleave in the system's *Corresponding network structure and increase the viscosity stability by strengthening the flooding system to improve the oil recovery capacity. The novel dispersed particle gel strengthened alkali/surfactant/polymer flooding systems have a high displacement efficiency and a better-swept volume capacity considering the oilfield requirement for the enhanced oil recovery process. The effects of polymer, surfactant, alkaline, and dispersed particle gel concentration on the combination flooding system were evaluated, furthermore the impact of external factors on the system such as salinity; aging time was described. The results showed that the effects of external factors aging time and salinity slightly affected the system's interfacial reduction capacity. The increase in interface elasticity produced significantly favorable effects on system stability. For the displacement mechanism, when the dispersed particle gel strengthened alkali/surfactant/polymer combination flooding system moved in a porous medium, the dispersed particle gel passed through the pore throat directly or by deformation depending on the system's pressure variation. Furthermore, the phase separation was formed due to the combined component's effects, resulting in the differential migration between the systems, which led to different degrees of chromatographic separation phenomenon to affect the displacement mechanism. As we can see in the micro visualization simulation experiment, the residual oil interacted with Alkali molecules and form the in-situ surfactant, which makes the remaining oil emulsified, as well the surfactant adsorbed by DPG particles, make the crude oil emulsified and get enhanced. The chromatography and micro visualization experiments results of the dispersed particle gel strengthened alkali/surfactant/polymer combination flooding system indicated a favorable application of the system in an enhanced oil recovery process.
引用
收藏
页数:16
相关论文
共 50 条
  • [31] Key theories and technologies for enhanced oil recovery of alkaline/surfactant/polymer flooding
    Cheng, J. (chengjiecheng@petrochina.com.cn), 1600, Science Press (35):
  • [32] Effect of nanoparticles on the performance of polymer/surfactant flooding for enhanced oil recovery: A review
    Tavakkoli, Omid
    Kamyab, Hesam
    Shariati, Mahdi
    Mohamed, Abdeliazim Mustafa
    Junin, Radzuan
    FUEL, 2022, 312
  • [33] Experimental study on the mechanism of enhancing oil recovery by polymer - surfactant binary flooding
    Liu Weidong
    Luo Litao
    Liao Guangzhi
    Zuo Luo
    Wei Yunyun
    Jiang Wei
    PETROLEUM EXPLORATION AND DEVELOPMENT, 2017, 44 (04) : 636 - 643
  • [34] Oil-recovery predictions for surfactant polymer flooding
    Rai, Khyati
    Johns, Russell T.
    Delshad, Mojdeh
    Lake, Larry W.
    Goudarzi, Ali
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2013, 112 : 341 - 350
  • [35] Experimental Investigation of the Effect of Surfactant-Polymer Flooding on Enhanced Oil Recovery for Medium Crude Oil
    Olabode, Oluwasanmi
    Dike, Humphrey
    Olaniyan, Damilola
    Oni, Babalola
    Faleye, Michael
    POLYMERS, 2024, 16 (12)
  • [36] Modeling of surfactant and surfactant–polymer flooding for enhanced oil recovery using STARS (CMG) software
    Rai S.K.
    Bera A.
    Mandal A.
    Journal of Petroleum Exploration and Production Technology, 2015, 5 (01) : 1 - 11
  • [37] Capsule polymer flooding for enhanced oil recovery
    HOU Jian
    LIU Yongsheng
    WEI Bei
    CAO Xulong
    SUN Jianfang
    DU Qingjun
    SONG Kaoping
    YUAN Fuqing
    SUN Pengxiao
    JI Yanfeng
    ZHAO Fangjian
    LIU Ruixin
    Petroleum Exploration and Development, 2024, 51 (05) : 1261 - 1270
  • [38] Experimental Investigation of Chemical Flooding Using Nanoparticles and Polymer on Displacement of Crude Oil for Enhanced Oil Recovery
    Akbar, Imran
    Zhou, Hongtao
    Liu, Wei
    Tahir, Muhammad Usman
    Memon, Asadullah
    Ansari, Ubedullah
    Lv, Fengzhang
    INTERNATIONAL JOURNAL OF CHEMICAL ENGINEERING, 2020, 2020
  • [39] Study on Microscopic Oil Displacement Mechanism of Alkaline-Surfactant-Polymer Ternary Flooding
    Li, Guoqiao
    Zhou, Zhaohui
    Fan, Jian
    Zhang, Fan
    Zhao, Jinyi
    Zhang, Zhiqiu
    Ding, Wei
    Zhang, Lu
    Zhang, Lei
    MATERIALS, 2024, 17 (18)
  • [40] Capsule polymer flooding for enhanced oil recovery
    Hou, Jian
    Liu, Yongsheng
    Wei, Bei
    Cao, Xulong
    Sun, Jianfang
    Du, Qingjun
    Song, Kaoping
    Yuan, Fuqing
    Sun, Pengxiao
    Ji, Yanfeng
    Zhao, Fangjian
    Liu, Ruixin
    PETROLEUM EXPLORATION AND DEVELOPMENT, 2024, 51 (05) : 1261 - 1270