Experimental Investigation on Effect of Enzyme and Nanoparticles on Oil-Brine Interfacial Tension

Tinuola Hannah, Oyinkepreye David
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引用次数: 1

Abstract

Interfacial tension (IFT) is an interfacial phenomenon that commonly exist between immiscible liquids such as oil and brine that are found in the hydrocarbon reservoirs. High IFT in combination with high capillary forces plays a fundamental role in residual oil saturation in the reservoir rock pores. The effects of enzyme and silica nanoparticles on crude oil-water and crude oil-brine interactions were investigated and presented in this study. The potential of individual application of enzyme and silica nanoparticles as well as the combination of both were explored under different salinity conditions. The results of this study showed that the application of silica nanoparticles did not significantly reduce oil-brine IFT under different salinity conditions investigated in this study, although the highest reduction was obtained with low salinity brine. The use of enzyme however significantly reduced oil-brine IFT under varied salinity conditions and better IFT reduction was obtained in brines relative to aqueous solution. Finally, the combination of enzyme with nanoparticles effected better IFT reduction than the application of either of them individually in aqueous solution and it also significantly reduced oil-brine IFT in all salinity conditions. This study is a novel investigation on the potential of enzyme-nanoparticles to modify oil-brine IFT and the result of this study is significant to the design and application of enzyme and nanoparticles enhanced oil recovery processes.
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酶和纳米颗粒对油-盐水界面张力影响的实验研究
界面张力(IFT)是一种通常存在于油藏中不混相液体(如油和盐水)之间的界面现象。高IFT与高毛管力的结合对储层岩石孔隙中残余油饱和度的影响至关重要。研究了酶和二氧化硅纳米颗粒对原油-水和原油-盐水相互作用的影响。探讨了酶和纳米二氧化硅在不同盐度条件下的单独应用潜力以及两者的结合。本研究结果表明,在本研究研究的不同盐度条件下,二氧化硅纳米颗粒的应用并没有显著降低油盐水的IFT,尽管在低盐度的盐水中获得了最大的降低。然而,在不同的盐度条件下,酶的使用显著降低了油盐水的IFT,相对于水溶液,盐水的IFT降低效果更好。最后,酶与纳米颗粒的结合比单独使用它们中的任何一种在水溶液中都能更好地降低IFT,并且在所有盐度条件下都能显著降低油-盐水的IFT。本研究是对酶-纳米颗粒修饰油-盐水IFT潜力的新探索,其结果对酶-纳米颗粒提高采收率工艺的设计和应用具有重要意义。
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