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Fundamental investigation of an environmentally-friendly surfactant agent for chemical enhanced oil recovery

机译:用于化学强化采油的环保型表面活性剂的基础研究

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摘要

Surfactant injection is an important chemical enhanced oil recovery (EOR) technique with beneficial impacts for oil recovery from subsurface reservoirs due to interfacial tension (IFT) reduction and wettability alteration. However, most of the available or proposed synthetic surfactants have negative environmental impacts. Here, a novel synthesis procedure of an amino-acid based (non-toxic; easily biodegradable) surfactant is described and its application for chemical FOR is rigorously tested using IFT, wettability and coreflooding experimental tests. The effect of salinity on the IFT reduction highlights the potential impact of injection water salt concentration on its performance. Two sets of carbonate and sandstone rock samples are used for wettability alteration tests. Two displacement tests quantitatively assess the performance of the proposed surfactant during injection as part of secondary and tertiary recovery schemes. The synthesized amino-acid based surfactant demonstrates good synergy with appropriate injection water salt concentrations. The wettability test results suggest that both sandstone and carbonate reservoir rocks would potentially benefit when subjected to chemical FOR using this surfactant. Comparisons between secondary and tertiary surfactant flooding schemes suggest that the surfactant is potentially more effective during secondary injection.
机译:表面活性剂注入是一项重要的化学强化采油(EOR)技术,由于界面张力(IFT)降低和润湿性改变,对从地下油藏采油具有有益的影响。但是,大多数可用的或提议的合成表面活性剂都具有负面的环境影响。在此,描述了一种基于氨基酸(无毒;易于生物降解)的表面活性剂的新型合成方法,并使用IFT,润湿性和岩心驱替实验测试对它在化学FOR中的应用进行了严格测试。盐度对IFT降低的影响突出了注入水盐浓度对其性能的潜在影响。两组碳酸盐和砂岩样品用于润湿性改变测试。两次置换试验定量评估了拟议的表面活性剂在注入过程中的性能,这是二次和三次采油计划的一部分。合成的氨基酸基表面活性剂与适当的注射水盐浓度显示出良好的协同作用。润湿性测试结果表明,使用该表面活性剂进行化学FOR时,砂岩和碳酸盐岩储层岩石都将潜在受益。二次和三次表面活性剂驱油方案之间的比较表明,表面活性剂在二次注入期间可能更有效。

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