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Spotlight on the New Natural Surfactant Flooding in Carbonate Rock Samples in Low Salinity Condition

机译:低盐度条件下碳酸盐岩样品中新型天然表面活性剂驱的研究热点

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摘要

Recently, utilization of surfactant for EOR purposes in carbonate petroleum reservoirs has received the attention of many researchers. Surfactants generally appear to improve oil production through wettability alteration and reduction of interfacial tension (IFT) between oil and water phases. Loss of surfactant due to adsorption process is considered as an unfavorable phenomenon in surfactant flooding while conducting an EOR operation. In this study, a new plant-derived surfactant, called Zyziphus Spina Christi (ZSC), with various magnitudes of salinity is employed. The adsorption behavior of this surfactant is investigated using the conductivity approach to explore the impacts of salt concentration on adsorption rate through batch tests. Core flooding tests are also conducted to study the effects of surfactant/salinity on recovery factor and relative permeability. Employing the kinetics and isotherm models, MgCl2 and KCl exhibit the greatest and lowest influence on the adsorption phenomenon, respectively. It is also concluded that the pseudo-second order kinetics and Freundlich isotherm model can satisfactorily describe the adsorption behavior of the surfactant onto carbonates in the presence of salt for the kinetics and equilibrium tests conditions, respectively. According to the production history, it is found that increasing surfactant concentration leads to a considerable increase in oil relative permeability and consequently improvement of oil recovery.
机译:近来,在碳酸盐石油储层中将表面活性剂用于EOR目的已受到许多研究者的关注。表面活性剂通常似乎通过改变润湿性和降低油相与水相之间的界面张力(IFT)来提高产油量。在进行EOR操作时,由于吸附过程而导致的表面活性剂的损失被认为是表面活性剂驱油中的不利现象。在这项研究中,使用了一种新的植物来源的表面活性剂,称为Zyziphus Spina Christi(ZSC),具有不同的盐度。使用电导率方法研究了该表面活性剂的吸附行为,以通过分批测试探索盐浓度对吸附速率的影响。还进行岩心驱油测试,以研究表面活性剂/盐度对采收率和相对渗透率的影响。利用动力学模型和等温线模型,MgCl2和KCl对吸附现象的影响分别最大和最小。还得出结论,拟二阶动力学和Freundlich等温模型可以分别描述动力学和平衡测试条件下,在盐存在下表面活性剂在碳酸盐上的吸附行为。根据生产历史,发现增加的表面活性剂浓度导致油的相对渗透率显着增加,并因此改善了油的采收率。

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