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Characterization of rock-fluid and fluid-fluid interactions in presence of a family of synthesized zwitterionic surfactants for application in enhanced oil recovery

机译:在合成的两性离子表面活性剂系列中存在岩石流体和流体流体相互作用,以应用于增强的溢油

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Zwitterionic surfactants are gaining importance for their application in enhanced oil recovery (EOR) because of their favourable thermodynamic and surface properties. A family of carboxybetaine based surfactants with hydrophobic tail length of 12, 14, 16 and 18 carbons were synthesized and characterized by FTIR and H-1 NMR spectroscopy. Critical micelle concentration (CMC) of the surfactants were found to be very low as compared to the conventional surfactants and thermodynamic studies revealed better surface and micellization activity. Salt tolerance study and Krafft point analysis indicated the suitability of the surfactants in the harsh reservoir conditions. Reduction of interfacial tension (IFT) between crude oil and surfactant solutions significantly decreased with increase in carbon chain length. Presence of salt and alkali were found to have synergetic effect in IFT reduction by the surfactants. Phase behaviour study showed formation of Winsor type III microemulsion which is desirable to displace the trapped oil by miscibility mechanism. The surfactants were also found to be effective in altering the wettability of oil-wet rock to water-wet, resulting better oil recovery. Sand pack experiments showed an additional oil recovery of 30.82% of original oil in place (OOIP) by injection of a small pore volume of surfactant slug in combination with alkali and polymer.
机译:由于其良好的热力学和表面性能,两性离子表面活性剂对其在增强的采油(EOR)中的应用具有重要性。通过FTIR和H-1 NMR光谱合成疏水性尾部长度为12,14,16和18个碳的基于羧酸基于羧基的表面活性剂。与常规表面活性剂相比,发现表面活性剂的临界胶束浓度(CMC)非常低,并且热力学研究显示出更好的表面和胶束化活性。耐盐性研究和KRAFFT点分析表明表面活性剂在苛刻储层条件下的适用性。用碳链长度的增加,原油和表面活性剂溶液之间的界面张力(IFT)的降低显着降低。发现盐和碱的存在在表面活性剂的IFT中具有协同作用。相行为研究显示WinSOR型III微型乳液的形成,这是期望通过混溶机制取代捕获的油。还发现表面活性剂有效改变油湿岩的润湿性,从而改变水湿,导致更好的储存。砂包实验表明,通过注射与碱和聚合物组合的小孔体积的表面活性剂块,额外的油回收原始油状物(OOIP)。

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