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Effects of Surfactant Blend Formulation on Crude Oil-Brine Interaction and Wettability: An Experimental Study

机译:表面活性剂共混物配方对原油-盐水相互作用和润湿性的影响:实验研究

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Interfacial tension of reservoir fluids and wettability are important parameters in the process of enhanced oil recovery. These two parameters affect the fluid distribution within reservoir formation. The fluids distribution in the reservoir strongly affects the flow behavior and residual oil recovery. Interfacial tension plays an important role due to its relationship between foam surface energy and foam stability. The wettability by contact angle measurement provides a method for determining fluid interaction and is considered as a basic research than practical tool for analysis of reservoir formation. The main objective of this research study is to determine the effects of interfacial tension and wettability on foam surfactant blend formulations, brine and crude oil. Anionic and nonionic surfactant blend were selected. The interfacial tension test was performed at 85°C. Dynamic interfacial tension of blended surfactant formulations with Malaysian crude oil were measured in fixed brine salinity. The interfacial tension values of tested surfactant blends were found lower than the interfacial tension between brine and crude oil. Interracial tension between crude oil and foam forming surfactant was reduced by using different concentration of surfactant blend. Good values were obtained by the measurement of contact angle between solid and three foam surfactant blend formulations. The interfacial tension and contact angle experimental studies revealed that, the blend of Alpha Olefin Sulfonate and Sodium Dodecyl Sulfonate with Octylphenol Ethylene Oxide play an important role in reducing the interfacial tension at crude oil-brine interface. The reduced interfacial tension and more wetting surface effects indicated that, these foam surfactant formulations are of great importance in the process of residual oil recovery.
机译:在提高采油率的过程中,储层流体的界面张力和润湿性是重要的参数。这两个参数影响储层中的流体分布。储层中的流体分布极大地影响了流动行为和残油采收率。界面张力由于其在泡沫表面能和泡沫稳定性之间的关系而起重要作用。通过接触角测量的润湿性提供了一种确定流体相互作用的方法,并且被认为是比用于分析储层形成的实用工具更基础的研究。这项研究的主要目的是确定界面张力和润湿性对泡沫表面活性剂混合物配方,盐水和原油的影响。选择阴离子和非离子表面活性剂混合物。界面张力测试在85℃下进行。在固定盐水盐度下测量了与马来西亚原油混合的表面活性剂配方的动态界面张力。发现测试的表面活性剂混合物的界面张力值低于盐水和原油之间的界面张力。通过使用不同浓度的表面活性剂混合物,降低了原油与泡沫形成表面活性剂之间的界面张力。通过测量固体和三种泡沫表面活性剂共混物制剂之间的接触角可获得良好的值。界面张力和接触角的实验研究表明,α-烯烃磺酸盐和十二烷基磺酸钠与辛基酚环氧乙烷的共混物在降低原油-盐水界面的界面张力中起重要作用。降低的界面张力和更湿润的表面效应表明,这些泡沫表面活性剂配方在残油采收过程中非常重要。

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