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Development of Novel Amidosulfobetaine Surfactant-Polymer Systems for EOR Applications

机译:EOR应用的新型酰胺基磺基甜菜碱表面活性剂-聚合物系统的开发

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Experimental studies were conducted to evaluate the thermal stability and rheological properties of novel surfactant-polymer (SP) systems for enhanced oil recovery applications. One in-house synthesized amphoteric amidosulfobetaine surfactant 3-(N-pentadecanamidopropyl-N,N-dimethylammonium)propanesulfonate and three different polymers were evaluated. Polymer A was a terpolymer of acrylamide, acrylamido tert-butyl sulfonate, and acrylic acid, whereas polymers B and C were terpolymers of acrylamide, N-vinylpyrrolidone, and acrylamido tert-butyl sulfonate with different anionicity. Long-term thermal stability of the surfactant was assessed using FTIR, H-1 NMR, and C-13 NMR. The surfactant was compatible with seawater at 90 A degrees C and no precipitation was observed. Structural analysis showed good thermal stability and no structural changes were observed after aging at 90 A degrees C. The effects of surfactant concentration, shear rate, salinity, and polymer concentration on rheological properties of the SP systems were determined. Polymer A showed highest viscosity among the investigated polymers in deionized and seawater. The interactions between the surfactant and polymer A were assessed using rheological measurements. In the presence of salts, the viscosity of all three polymers reduced significantly as a result of charge screening. At low shear rates, the added surfactant slightly decreased the viscosity and storage modulus of polymer A. At high shear rates, the effect of the surfactant on the viscosity and storage modulus of polymer A was insignificant.
机译:进行了实验研究,以评估用于提高采油率的新型表面活性剂-聚合物(SP)系统的热稳定性和流变性能。评价了一种内部合成的两性氨基磺基甜菜碱表面活性剂3-(N-十五烷酰胺基丙基-N,N-二甲基铵)丙烷磺酸盐和三种不同的聚合物。聚合物A是丙烯酰胺,丙烯酰胺基叔丁基磺酸盐和丙烯酸的三元共聚物,而聚合物B和C是丙烯酰胺,N-乙烯基吡咯烷酮和丙烯酰胺基叔丁基磺酸盐具有不同阴离子性的三元共聚物。使用FTIR,H-1 NMR和C-13 NMR评估了表面活性剂的长期热稳定性。该表面活性剂与90°C的海水相容,没有观察到沉淀。结构分析显示出良好的热稳定性,在90 A的温度下老化后未观察到结构变化。确定了表面活性剂浓度,剪切速率,盐度和聚合物浓度对SP体系流变性能的影响。在去离子水和海水中,聚合物A在研究的聚合物中显示出最高的粘度。使用流变学测量来评估表面活性剂与聚合物A之间的相互作用。在盐的存在下,所有三种聚合物的粘度由于电荷筛选而显着降低。在低剪切速率下,添加的表面活性剂稍微降低了聚合物A的粘度和储能模量。在高剪切速率下,表面活性剂对聚合物A的粘度和储能模量的影响微不足道。

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