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Development of silicon quantum dots based nano-fluid for enhanced oil recovery in tight Bakken cores

机译:基于硅量子点的纳米液体,以加强Bakken核心储存

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摘要

A novel silicon quantum dots (SiQDs) based nano-fluid was first developed for effectively recovering Bakken Oil. The Bakken Formation is one of the largest contiguous deposits of unconventional oil in the USA and Canada. However, the oil recovery rate is only 5% - 10% due to the existence of abundant tiny pores and ultra-low permeability. In this work, a novel nano-fluid was developed using ultra-small sized silicon quantum dots (SiQDs) coated with a zwitterionic surfactant. The nano-fluid exhibited good stability in synthetic high salinity brine containing divalent cations at high temperature and excellent capabilities in reducing interfacial tension and altering wettability, making it a good enhanced oil recovery (EOR) agent for tight Bakken Formation. Experimental results showed that the developed nano-fluid recovered 25.72 %OOIP (original oil-in-place) from Bakken core samples by spontaneous imbibition, which was 7.49 %OOIP higher than using surfactant alone. Similar results were obtained in the core flooding tests, where 41.98 %OOIP was finally recovered by the nanofluid, compared to 30.28% in surfactant case. Herein, the mechanisms of disjoining pressure and synergistic effects between surfactant and nanoparticles have also been put forward. In short, the developed quantum dots based nano-fluid has played an instructive and a reference role in the application of oil field and would be a potential oil displacing agent for EOR.
机译:首先开发了一种新颖的硅量子点(SIQDS)的纳米液,以有效地回收Bakken油。 Bakken的形成是美国和加拿大的非传统石油最大的连续沉积物之一。然而,由于存在丰富的孔隙和超低渗透率,储存率仅为5% - 10%。在这项工作中,使用涂有两性离子表面活性剂的超小尺寸硅量子点(Siqds)开发了一种新型纳米流体。纳米流体在高温下含有二价阳离子的合成高盐水盐水稳定性,可在降低界面张力和改变润湿性方面,使其成为紧密Bakken地层的良好增强的采油(EOR)试剂。实验结果表明,发育的纳米流体通过自发性吸入从Bakken核心样品中回收了25.72%的ooIP(原始燃油原始燃油),其仅比使用表面活性剂高出7.49%。在核心泛滥试验中获得了类似的结果,其中纳米流体最终回收41.98%的幼粒,而表面活性剂壳体中的30.28%。在此,还提出了脱充压力和表面活性剂和纳米颗粒之间的协同作用的机制。简而言之,基于发达的量子点的纳米流体在油田的应用中发挥了一种有效和参考作用,并且是EOR的潜在油位移剂。

著录项

  • 来源
    《Fuel》 |2020年第1期|118203.1-118203.12|共12页
  • 作者单位

    Univ North Dakota Dept Chem Grand Forks ND 58202 USA|Northeast Petr Univ Coll Petr Engn Daqing 163318 Heilongjiang Peoples R China|Northeast Petr Univ Key Lab Enhanced Oil Recovery Educ Minist Daqing 163318 Heilongjiang Peoples R China;

    Univ North Dakota Dept Chem Grand Forks ND 58202 USA;

    Univ North Dakota Dept Petr Engn Grand Forks ND 58202 USA;

    Univ North Dakota Dept Petr Engn Grand Forks ND 58202 USA;

    Univ North Dakota Dept Petr Engn Grand Forks ND 58202 USA;

    Univ North Dakota Dept Chem Grand Forks ND 58202 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Silicon quantum dots; Nano-fluid; Interfacial tensicas; Oil contact angle; Enhanced oil recovery; Surfactant;

    机译:硅量子点;纳米液;界面纹状;油接触角;增强的采油;表面活性剂;

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