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Sulfonated Polystyrene Nanoparticles as Oleic Acid Diethanolamide Surfactant Nanocarriers for Enhanced Oil Recovery Processes

机译:磺化聚苯乙烯纳米颗粒作为油酸二乙醇酰胺表面活性剂纳米载体用于增强采油工艺

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摘要

The aim of this study is the evaluation of partially sulfonated polystyrene nanoparticles (SPSNP) efficiency as nanocarriers for a non-ionic surfactant, oleic acid diethanolamide (OADA), in the reduction of the surfactant losses and the increase of oil recovery. The synthesized oleic acid diethanolamide was characterized by FTIR, 1H NMR, 13C NMR, surface tension (γ = 36.6 mN·m−1, CMC = 3.13 × 10−4 M) and interfacial tension of mineral oil/OADA aqueous solutions (IFTeq = 0.07 mN·m−1). The nanoparticles (SPSNP) were obtained by emulsion polymerization of styrene, DVB and sodium 4-styrenesulfonate (St-S) in the presence of OADA aqueous solution and were characterized by FTIR and PCS. The results show that the presence of ionic groups in the polymer structure promoted a better nanoparticles suspensions′ stability, smaller particles production and more pronounced IFT reduction. The SPSNP obtained with an OADA concentration twenty times its CMC and 0.012 mol % of St-S presented a particle size around 66 nm and can act as efficient nanocarriers decreasing the water/oil interfacial tension to low values (0.07 mN·m−1) along the time, when in contact with the oil. Transport and oil recovery tests of the nanocarriers systems in an unconsolidated sand porous medium test show that the SPSNP do inhibit surfactant adsorption onto sand particles surface and induced an increase of oil recovery of up to about 13% relative to the water flooding oil recovery, probably due to a synergistic effect between the nanoparticles and surfactant action at the water/oil interface.
机译:这项研究的目的是评估部分磺化聚苯乙烯纳米颗粒(SPSNP)作为非离子表面活性剂油酸二乙醇酰胺(OADA)的纳米载体的效率,以减少表面活性​​剂的损失并提高采油量。 FTIR, 1 H NMR, 13 C NMR,表面张力(γ= 36.6 mN·m -1 )表征了合成的油酸二乙醇酰胺。 ,CMC = 3.13×10 −4 M)和矿物油/ OADA水溶液的界面张力(IFTeq = 0.07 mN·m -1 )。在OADA水溶液存在下,通过苯乙烯,DVB和4-苯乙烯磺酸钠(St-S)的乳液聚合获得纳米颗粒(SPSNP),并通过FTIR和PCS对其进行表征。结果表明,聚合物结构中离子基团的存在促进了更好的纳米粒子悬浮液的稳定性,更小的粒子产生和更明显的IFT降低。 OADA浓度为CMC的20倍且St-S为0.012 mol%时获得的SPSNP的粒径约为66 nm,可作为有效的纳米载体,将水/油界面张力降低至低值(0.07 mN·m -1 )接触油时。纳米载体系统在未固结的砂多孔介质测试中的运输和采油测试表明,SPSNP确实抑制了表面活性剂吸附在砂粒表面上,并导致相对于注水采油量的采油量提高了约13%。由于纳米颗粒和表面活性剂在水/油界面上的协同作用而产生的协同作用。

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