二聚铵表面活性剂盐-重质原油-原生水体系的微乳及相行为

Ronald Nguele , Kyuro Sasaki , Hikmat Said-Al Salim , Yuichi Sugai , Arif Widiatmojo , Masanori Nakano
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引用次数: 19

摘要

基本上,未开发原油的开采方法需要在储层中注入外来物质,从而促进剩余油的驱替。在化学提高采收率(EOR)中,微观波及效率主要取决于低界面张力的实现。研究了由二聚铵盐表面活性剂接触形成的微乳液的表面张力和相行为特性,并将其超低界面张力(IFT)与化工采收率中常用的聚山油酯表面活性剂进行了比较。在相当低的浓度下,二聚体表面活性剂的IFT达到10−3 mN/m量级。耐盐性和IFT不仅受原油的稠度(即API)的影响,还受储层条件的影响。此外,在这项工作中引入的烷烃碳数(ACN)表明,仅根据原油的化学成分和/或其性质对胶束段塞配方进行建模可能会产生误导。发现二价离子的存在促进了IFT的增加,而不是向较低的值转移。胶束段塞在白云岩和Berea砂岩中均有较低的吸附。然而,二聚体表面活性剂的活性头表现出对碳酸盐岩的优先附着,而对砂岩的相互作用较低。最后,本研究强调了二聚体铵盐表面活性剂的抑酸活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microemulsion and phase behavior properties of (Dimeric ammonium surfactant salt – heavy crude oil – connate water) system

Fundamentally, recovery methods of untapped crude oils require injection of foreign material(s) in the reservoir, which subsequently promote(s) the displacement of residual oil. In chemical enhanced oil recovery (EOR), the microscopic sweep efficiency depends primarily on achievement of a low interfacial tension. The present work investigates into the surface tension and phase behavior properties of microemulsion developed from a contact between a dimeric ammonium salt surfactant achieve an ultra-low interfacial tension (IFT) was compared with a conventional polysorbate surfactant commonly used in chemical EOR. At fairly low concentration, dimeric surfactants achieved an IFT of order of 10−3 mN/m. Salinity tolerance and IFT were significantly altered not only by the heaviness i.e. API of the crude, but also by the reservoir conditions. Moreover, alkane carbon number (ACN), introduced in this work, revealed that modeling a micellar slug formulation solely based on chemical composition of the crude and/or its nature could be misleading. Presence of divalent ions was found to promote the increase in IFT rather to a shift to a lower value. Also, a relative low adsorption of micellar slug was found in both dolomite and Berea sandstone. However, active head of the dimeric surfactant showed a preferential attachment to carbonate rock while low interactions were observed for sandstone. Lastly, the present study has highlighted an inhibiting acidity activity for dimeric ammoniums salt surfactants.

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