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Experimental and Theoretical Study of Viscosity Reduction in Heavy Crude Oils by Addition of Nanoparticles

机译:通过添加纳米颗粒降低稠油粘度的实验和理论研究

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摘要

Heavy and extra-heavy oils generally exhibit high viscosity, which is detrimental to their production, transport, and refining. The oil and gas industry has thoroughly investigated the use of chemical agents to improve the mobility of this type of low-quality crude oil at the surface as well as reservoir conditions for many years. In this sense, the main objective of this paper is to provide unexpected experimental evidence of heavy oil and extra-heavy crude oils viscosity reduction resulting from the presence of nanoparticles (NPs) of different chemical natures (SiO2, Fe3O4, and Al2O3), particle size, surface acidity, and concentration at low-volume fractions. The viscosity of the enhanced fluids was measured using a rotational rheometer at shear rates varying between 1 and 75 s(-1). Upon addition of nanoparticles, viscosity reduction was observed in all cases evaluated. However, the maximum viscosity reduction of roughly 52% was obtained at a concentration of 1000 mg/L with 7 nm SiO2 nanoparticles at shear rates below 10 s(-1), contrary to expectations from Einstein's viscosity theory in particulate systems. A mathematical model based on a modification to Pal and Rhodes Model for the viscosity of suspensions is proposed in this work. The said model that relates the concentration-of nanoparticles to the fluid mixture viscosity was validated successfully using experimental data, as evidenced by RSME% values lower than 10%. The importance of,our findings lies in the lack of previous experimental and. theoretical data in the open literature showing heavy crude oil viscosity reduction in the presence of nanoparticles.
机译:重油和超重油通常显示出高粘度,这不利于其生产,运输和精炼。多年来,石油和天然气工业已经对化学试剂的使用进行了彻底的研究,以改善这类劣质原油在地表和储层条件下的流动性。从这个意义上讲,本文的主要目的是提供由于化学性质不同的纳米颗粒(SiO2,Fe3O4和Al2O3),颗粒而导致的重油和超重原油粘度降低的出乎意料的实验证据。体积小,表面酸度低和浓度低。使用旋转流变仪在1至75 s(-1)之间的剪切速率下测量增强流体的粘度。添加纳米颗粒后,在所有评估的情况下均观察到粘度降低。然而,与剪切速率低于10 s(-1)的7 nm SiO2纳米颗粒在1000 mg / L的浓度下,获得的最大粘度降低约为52%,这与爱因斯坦在颗粒体系中的粘度理论所期望的相反。在这项工作中,提出了一种基于对Pal和Rhodes模型进行修改的悬浮液粘度的数学模型。使用实验数据成功地验证了将纳米颗粒浓度与流体混合物粘度相关联的所述模型,如RSME%值低于10%所证明的。我们的发现的重要性在于缺乏先前的实验和。开放文献中的理论数据显示在存在纳米颗粒的情况下重质原油粘度降低。

著录项

  • 来源
    《Energy & fuels》 |2017年第2期|1329-1338|共10页
  • 作者单位

    Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Fenomenos Superficie Michael Polanyi, Kra 80 65-223, Medellin, Colombia;

    Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Fenomenos Superficie Michael Polanyi, Kra 80 65-223, Medellin, Colombia|Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Yacimientos Hidrocarburos, Kra 80 65-223, Medellin, Colombia;

    Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Yacimientos Hidrocarburos, Kra 80 65-223, Medellin, Colombia;

    Univ Wyoming, Dept Chem Engn, Dept 3295,1000 East Univ Ave, Laramie, WY 82071 USA;

    Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Fenomenos Superficie Michael Polanyi, Kra 80 65-223, Medellin, Colombia|Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Yacimientos Hidrocarburos, Kra 80 65-223, Medellin, Colombia;

  • 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
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  • 关键词

  • 入库时间 2022-08-18 00:39:32

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