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首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >Evaluation of new surfactants for enhanced oil recovery applications in high-temperature reservoirs
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Evaluation of new surfactants for enhanced oil recovery applications in high-temperature reservoirs

机译:高温储层中加油回收应用的新表面活性剂评价

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摘要

Surfactants have been successfully used for enhanced or improved oil recovery in reservoirs having mild conditions (low temperature, low salinity). Reservoirs having harsh conditions, however, offer unique challenges in that most surfactants precipitate and chemically degrade due to a combined effect of high temperature and hardness salinity. Industry’s efforts are continuing to develop or formulate surfactants for oil recovery applications to high temperature and salinity. The aim of this study was to evaluate several modified anionic surfactants/formulations that were claimed to be able to overcome the unfavorably high-salinity brine (sea water) and high temperature and to understand the impact of high temperature to surfactant adsorption. A series of experiments were conducted to characterize and quantify the effects of aging time in high temperature (106?°C) and seawater salinity (32,000?ppm with 1600 hardness) on surfactant performance. Results for both sulfate- and sulfonate-based surfactants were deemed not to be satisfactory. Sulfate-based surfactants encountered hydrolysis problem at high temperature, whereas sulfonate-based surfactants precipitated in the presence of divalent ions. This study then focused on alkyl ether carboxylate (AEC) as the main surfactant, and blends of AEC with alkyl polyglucoside (APG). To find the optimum conditions, phase behavior tests were performed with a fixed seawater salinity but with different blending ratios of surfactant and co-surfactant, as well as overall surfactant concentrations, similar to the salinity scan. Type III microemulsion was observed for both surfactant solutions of AEC and AEC–APG blend with IFT of 10?3 mN/m (millinewton/meter). Surfactant adsorption resulted in lower adsorption in the high-temperature region. The results of this project are urgently needed by the industry for future screening in order to find suitable surfactants for applying to reservoirs with harsh conditions. The study also intends to provide an understanding of adsorption relationship to high temperature, as a guideline in addressing surfactant losses due to adsorption at high-temperature field application.
机译:表面活性剂已成功地用于增强或改善具有温和条件(低温,低盐度)的储层中的储存的储存。然而,由于高温和硬度盐度的综合效应,大多数表面活性剂沉淀和化学降解,储存器具有苛刻的条件。行业的努力正在继续开发或配制用于高温和盐度的石油回收应用的表面活性剂。本研究的目的是评估一些修饰的阴离子表面活性剂/制剂,所述制剂可以克服不利的高盐度盐水(海水)和高温,并了解高温对表面活性剂吸附的影响。进行了一系列实验,以表征和量化在高温(106℃)和海水盐度(32,000μmbm具有1600个硬度)的老化时间对表面活性剂性能的影响。硫酸盐和磺酸盐的表面活性剂的结果认为不令人满意。基于硫酸盐的表面活性剂在高温下遇到水解问题,而基于磺酸盐的表面活性剂在二价离子存在下沉淀。然后该研究将烷基醚羧酸盐(AEC)聚焦在主要表面活性剂上,并与烷基聚葡糖苷(APG)的共混物。为了找到最佳条件,通过固定的海水盐度进行相位行为试验,但具有不同的表面活性剂和共表面活性剂的混合比,以及总表面活性剂浓度,类似于盐度扫描。对于AEC和AEC-APG混合物的表面活性剂溶液,观察III型微乳液与10?3mN / m(Millinewton / Mill)的IFT。表面活性剂吸附导致高温区域吸附较低。该项目的结果是由该行业迫切需要进行未来筛查,以便找到合适的表面活性剂,以申请储存的储层。该研究还旨在了解对高温的吸附关系,作为在高温场应用中吸附引起的表面活性剂损失的指导方针。

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