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Effect of interface elasticity on improved oil recovery in a carbonate rock from low salinity and ultra-low concentration demulsifier

机译:界面弹性对低盐分和超低浓度破乳剂改善碳酸盐岩中的采油的影响

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The increase in oil recovery from low salinity water injection has been often attributed to the alteration of wettability to water wetting. The increase in elasticity of the interface may also contribute to increase in oil recovery as has been suggested in the literature.In this work, we investigate oil recovery using two carbonate cores, one with large vugs, and the other without. The pore size and pore size distributions are very different in the two carbonate cores. The investigation centers on oil recovery from low and high salinity water injection, and by addition of an effective demulsifier molecule at 100 ppm in the injected high salinity water. The effective demulsifier molecule gives substantially higher oil recovery than low salinity and high salinity water injection. The oil-water interface elasticity increases significantly from the addition of 100 ppm demulsifier molecule to the aqueous phase. Salinity of the injected water is found to have a weak effect on oil recovery. We attribute high recovery performance of the 100 ppm surfactant to the increase in interface elasticity. The high recovery performance is observed in the carbonate reservoir rocks, both with and without vugs. The demulsifier molecule which is non-ionic has a very low adsorption in the carbonate rocks, around 2 mg/g at 100 ppm in high salinity injection water.This work introduces a new process for improved oil recovery by the introduction of a demulsifier molecule at ultra-low cocentration. The molecule has limited effect on water-wetting. The critical micelle concentration (CMC) of the non-ionic surfactant in the injected brine is at 30 ppm. The low adsorption, and the CMC indicate that the molecule adsorbs at the oil-water interface. The conventional chemical flooding which may require one or two orders of magnitude more material is through significant reduction of interfacial tension. The interface elasticity is singled out to be the main contribution to improved oil recovery in this work.
机译:低盐度注水的油回收的增加往往归因于润湿性润湿性的改变。界面弹性的增加也可能有助于在文献中提出的溢油增加。在这项工作中,我们使用两种碳酸核心,一个带有大Vug的碳酸核来调查漏油,另一个没有。孔径和孔径分布在两种碳酸核核中非常不同。调查中心从低盐水注入的油回收,并通过在注射的高盐度水中加入100ppm的有效破乳剂分子。有效的破乳剂分子基本上高于低盐度和高盐度注水的油回收。从加入100ppm破乳剂分子到水相,油水界面弹性显着增加。发现注射水的盐度对油回收产生薄弱。我们将100ppm表面活性剂的高回收性能归因于界面弹性的增加。在碳酸盐储层岩石中观察到高回收性能,两者都有和没有Vug。非离子的破乳剂分子在碳酸盐岩中具有非常低的吸附,在高盐度注入水的100ppm下约为2mg / g。这项工作引入了通过引入破乳剂分子改善溢油的新方法超低牙线。分子对水润湿有限。注入盐水中的非离子表面活性剂的临界胶束浓度(CMC)为30ppm。低吸附和CMC表明分子在油水界面处吸附。可能需要一种或两个数量级的常规化学洪水是通过显着降低界面张力的显着降低。界面弹性被挑选出来是改善这项工作中的石油恢复的主要贡献。

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