首页> 外文期刊>Energy & fuels >Synergistic Effect of Brine System Containing Mixed Monovalent (NaCl, KCl) and Divalent (MgCl_2, MgSO_4) Salts on the Interfacial Tension of Pure Hydrocarbon-Brine System Relevant for Low Salinity Water Flooding
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Synergistic Effect of Brine System Containing Mixed Monovalent (NaCl, KCl) and Divalent (MgCl_2, MgSO_4) Salts on the Interfacial Tension of Pure Hydrocarbon-Brine System Relevant for Low Salinity Water Flooding

机译:盐水系统的协同作用含有混合的单价(NaCl,KCl)和二价(MgCl_2,MgSO_4)盐对低盐水泛水相关的纯烃 - 盐水系统的界面张力

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摘要

Interfacial tension (IFT) plays a vital role in the petroleum industry for enhanced oil recovery. In recent years, a new technology called "low salinity water flooding" has captured the attention of researchers because of its ability to alter IFT. However, the role of salt types and their impact on the IFT of pure hydrocarbon-water systems are not well understood which could help to develop robust models and processes. In the present investigation, we have considered both aliphatic (heptane) and aromatic (toluene) hydrocarbons along with set of nine mixed brine systems containing monovalent (NaCl, KCl) and divalent (MgCl2, MgSO4) salts with a wide range of compositions and concentrations for IFT studies which are otherwise not reported in the literature. Various combinations of monovalent salts (NaCl:KCl::25:75, NaCl:KCl::50:50, NaCl:KCl::75:25) divalent salts (MgSO4:MgCl2::25:75, MgSO4:MgCl2::50:50, MgSO4:MgCl2::75:25), and monovalent and divalent salts (NaCl:MgCl2::25:75, NaCl:MgCl2::50:50, NaCl:MgCl2::75:25) along with varying concentrations (0, 500, 750, 1 000, 2 000, 5 000, 10 000, 20 000 ppm) have been used. The experimental result reveals that combination of monovalent (NaCl) and divalent (MgCl2) salt in brine has significant impact on the reduction of the IFT of the n-heptane-brine system, and combination of divalent salts (MgSO4 and MgCl2) shows better impact on IFT reduction for the toluene-brine system. The mechanism of IFT variation at different salt concentrations and compositions has also been explained based on the Gibbs adsorption isotherm and specific ion effect based on the Hofmeister series. The study will be useful to understand the synergetic effect of these salts on the hydrocarbon-brine systems and also will help to develop robust models of IFT suitable for low salinity water flooding and other industrial operations.
机译:界面张力(IFT)在石油工业中发挥着重要作用,以提高储油。近年来,由于其改变IFT的能力,一项名为“低盐水洪水”的新技术捕获了研究人员的注意。然而,盐类型的作用及其对IFT的IFT的影响尚不清楚,可以有助于开发强大的模型和过程。在本研究中,我们已经考虑了脂族(庚烷)和芳族(甲苯)烃以及含有一组含有一价(NaCl,KCl)和二价(MgCl 2,MgSO 4)盐的含氮盐水(MgCl 2,MgSO 4)盐的含有各种组合物和浓度对于IFT研究,在文献中没有报道。单价盐的各种组合(NaCl:Kcl :: 25:75,NaCl:Kcl :: 50:50,NaCl:Kcl :: 75:25)二价盐(MgSO 4:MgCl 2 :: 25:75,MgSO 4:MgCl2 :: 50:50,MgSO4:MgCl2 :: 75:25)和单价和二价盐(NaCl:MgCl 2 :: 25:75,NaCl:MgCl 2 :: 50:50,NaCl:MgCl 2 :: 75:25)以及不同的影响已经使用浓度(0,500,750,100,000,2000,5 000,10 000,200ppm)。实验结果表明,盐水中的一价(NaCl)和二价(MgCl2)盐的组合对N-庚烷 - 盐水系统的IFT的还原具有显着的影响,并且二价盐(MgSO 4和MgCl2)的组合显示出更好的影响关于甲苯盐水系统的IFT。还基于Gibbs吸附等温线和基于Hofmeister系列的特定离子效应来解释不同盐浓度和组合物的IFT变化的机理。该研究对于了解这些盐对烃料 - 盐水系统的协同作用,也将有助于开发适合低盐水洪水和其他工业作业的IFT的强大模型。

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  • 来源
    《Energy & fuels》 |2020年第4期|4201-4212|共12页
  • 作者单位

    Indian Inst Technol Madras Dept Ocean Engn Petr Engn Program Enhanced Oil Recovery Lab Chennai 600036 Tamil Nadu India;

    Indian Inst Technol Madras Dept Ocean Engn Petr Engn Program Enhanced Oil Recovery Lab Chennai 600036 Tamil Nadu India;

  • 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 22:24:53

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