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An Experimental Feasibility Study of In-situ Nano-particles in Enhanced Oil Recovery and Heavy Oil Production

机译:原位纳米颗粒提高采油率和重油产量的实验可行性研究

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摘要

The influence of nanoclays on the asphaltene deposition, the recovery factor, and the solvent consumption of Iranian heavy oil were studied in a vapor extraction process. Experimental setup consisted of two visual sand-packed cells that were packed, one only with glass-beads as oil matrix and the other with glass-beads and modified montmorillonite as nanoclay, while they had similar porosity and permeability. The analysis of variance on simulated, conventional, and nano-assisted vapor extraction processes showed that nanoclays are able to change the matrix heterogeneity. The high content of precipitated asphaltenes in nano-assisted matrix demonstrated that asphaltenes were adsorbed into the nanoclays, dominantly, and distribution of asphaltene showed a reduction in their facial concentration from the injection port to the oil production port in both cells. The results revealed that the nanoclays increase the dissolved efficiency of solvent and the recovery factor by 30(±4)% in all three replicated experiments.
机译:在蒸汽萃取过程中研究了纳米粘土对伊朗重油沥青质沉积,回收率和溶剂消耗的影响。实验装置由两个填充有视觉填充物的小室组成,一个仅包含玻璃珠作为油基质,另一个包含玻璃珠和改性蒙脱土作为纳米粘土,而它们具有相似的孔隙率和渗透性。对模拟,常规和纳米辅助气相萃取工艺的方差分析表明,纳米粘土能够改变基质的异质性。纳米辅助基质中高含量的沉淀沥青质表明沥青质被吸附到纳米粘土中,并且沥青质的分布显示了从两个单元中的注入口到采油口的面部浓度降低。结果表明,在所有三个重复的实验中,纳米粘土均将溶剂的溶解效率和回收率提高了30(±4)%。

著录项

  • 来源
    《Energy sources》 |2013年第24期|2198-2208|共11页
  • 作者单位

    Department of Chemical Engineering, Islamic Azad University, Shahreza Branch, Shahreza, Iran;

    Chemical Engineering Faculty, Tarbiat Modares University, jalal-al-ahmad highway, Tehran 14115 134, Iran;

    Petroleum University of Technology Research Center, Tehran, Iran;

    Production Engineering Department, Iranian Offshore Oil Company, Lavan Island, Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    asphaltene; heavy oil; nanoclay; upgrading; vapor extraction;

    机译:沥青质重油;纳米粘土升级蒸气萃取;

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