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Partitioning behaviour of novel surfactant mixture for high reservoir temperature and high salinity conditions

机译:新型表面活性剂混合物在高储层温度和高盐度条件下的分配行为

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摘要

Investigating the use of surfactants in high temperature and high salinity conditions can assist expanding the application of surfactant-based enhanced oil recovery (EOR) to more challenging environments. In the present work, compatibility and thermal stability for alkyl ether carboxylate (AEC) and alkylpoly-glucoside (APG) were investigated at anaerobic conditions. The most suitable surfactant formulation was selected after passing the screening criteria of compatibility and thermal stability for the studied offshore field. Interfacial tension (IFT) and partitioning of the selected surfactant formulation were then studied at different surfactant concentrations, brine/oil ratios, temperatures, and salinities. The partitioning behaviour of the AEC:APG mixture was comprehensively examined under the before mentioned conditions. The screening experiments for the individual surfactant AEC have shown poor compatibility and thermal stability. Whereas, a 50:50 ratio of the anionic-nonionic (AEC:APG) mixture has passed the compatibility test criteria. For 90 days, the mixture demonstrated remarkable compatibility and thermal stability at high water salinity (32k ppm) and high temperature (106 ℃). The IFT of the AECAPG mixture was significantly affected by the increase of surfactant concentration, temperature and salinity. The proposed mechanism, through the experimental results, illustrated that as surfactant mixture concentration gradually increased, additional molecules of AEC occupied the interface whereas the APG molecules tend to attach to the existed APG molecules at the interface via hydrogen bonds and they both formed a new interface. The formed interface caused the increment of the IFT values. The outcomes proved that APG was the most dominant surfactant as it had the highest impact on the mixture behaviour. It is believed that the outcomes of this work are expected to provide a better fundamental understanding of the surfactant partitioning behaviour in high temperature and high salinity conditions, as well as providing a basic guideline to design efficient surfactant flooding slugs.
机译:研究在高温和高盐度条件下使用表面活性剂可以帮助将基于表面活性剂的强化采油(EOR)的应用扩展到更具挑战性的环境。在目前的工作中,在厌氧条件下研究了烷基醚羧酸盐(AEC)和烷基聚葡萄糖苷(APG)的相容性和热稳定性。通过所研究的海上油田的相容性和热稳定性筛选标准后,选择最合适的表面活性剂配方。然后在不同的表面活性剂浓度,盐水/油比,温度和盐度下研究了界面张力(IFT)和所选表面活性剂配方的分配。在上述条件下,全面检查了AEC:APG混合物的分配行为。单个表面活性剂AEC的筛选实验显示出较差的相容性和热稳定性。而50:50的阴离子-非离子(AEC:APG)混合物已通过相容性测试标准。在90天的时间里,该混合物在高盐度(32k ppm)和高温(106℃)下表现出显着的相容性和热稳定性。表面活性剂浓度,温度和盐度的增加显着影响了AECAPG混合物的IFT。通过实验结果,所提出的机理表明,随着表面活性剂混合物浓度的逐渐增加,AEC的其他分子占据了界面,而APG分子则倾向于通过氢键与界面上已存在的APG分子附着,它们都形成了新的界面。 。形成的界面导致IFT值增加。结果证明,APG是最主要的表面活性剂,因为它对混合物的性能影响最大。可以相信,这项工作的结果有望对高温和高盐度条件下的表面活性剂分配行为提供更好的基本了解,并为设计有效的表面活性剂驱油塞料提供基本指导。

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