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Characterization of ternary compound viscosity reducer system on viscosity of viscous crude oil

机译:三元化合物粘度减速器体系对粘性原油粘度的特征

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Based on the theory that viscous crude oil can form stable two-phase oil-water interfacial molecular membrane with surfactant, the oil-water interfacial activity and viscosity reduction of oil-water interface of viscous crude oil were studied for the ternary compound system, including anionic surfactant alpha olefin sulfonate (AOS), weak alkali Na_2CO_3 and four different kinds of nonionic surfactant emulsifying silicon oil (LKR-1023), lauryl diethanolamide (LDEA), isomeric alcohol ethoxyiates (E-1306), and polyoxyethylene sorbitan monooleate (T-80). Results showed when lipophilic or hydrophilic nonionic surfactants were used separately in the same compound system. The viscosity of viscous crude oil could be reduced, but the viscosity reduction efficacy was not desirable. However, using LKR-1023, E-1306, and T-80 as nonionic surfactant with mass fraction 1.0%, the viscosity reduction rate of viscous crude oil reaches 98.92%, 98.29%, and 96.87%, respectively. With 1.4% of LDEA, the viscosity reduction rate of viscous crude oil can reach 98.89%. Through all different kinds of the nonionic surfactant tested, oil-in-water (O/W) emulsion under LDEA ternary compound system has been proved to be the most stable with no phase inversion. Therefore, it is promising to improve the viscosity reduction of the super viscous crude oil by selecting the proper surfactant and dosage.
机译:基于粘性原油可以形成具有表面活性剂的稳定的两相油界面分子膜的理论,研究了三元化合物系统的粘性原油油 - 水界面的油 - 水界面活性和粘度降低,包括阴离子表面活性剂α烯烃磺酸盐(AOS),弱碱Na_2CO_3和四种不同种类的非离子表面活性剂乳化硅油(LKR-1023),月桂基二乙醇酰胺(LDEA),异构醇乙氧基(E-1306)和聚氧乙烯脱水山梨糖醇单一Omooleate(T- 80)。结果表明,当在相同的复合体系中单独使用亲脂性或亲水性非离子表面活性剂。可以降低粘性原油的粘度,但不需要粘度降低效果。但是,使用LKR-1023,E-1306和T-80作为非离子表面活性剂,具有质量分数1.0%,粘性原油的粘度降低速率分别达到98.92%,98.29%和96.87%。含有1.4%的LDEA,粘性原油的粘度降低率可达98.89%。通过所有不同种类的非离子表面活性剂测试,乳糖三元化合物系统下的水溶液(O / W)乳液已被证明是最稳定的,没有相倒置。因此,希望通过选择适当的表面活性剂和剂量来改善超粘性原油的粘度降低。

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