Development and Performance Evaluation of Nano-dispersion System for Oil Displacement with Temperature Resistance and Salt Tolerance
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    Abstract:

    In order to improve the problems of high temperature fracture,poor salt resistance and long-term stability of polymer flooding system in high temperature and high salt reservoirs,a new nano-dispersion system composed of oleic acid modified nano-SiO2(O-SiO2)and hydrophobically associating polymer KAPAM was developed. The viscosity,temperature resistance,salt tolerance,shear resistance,long-term stability and oil displacement effect of the nano-dispersion system were evaluated. The results showed that compared with single KAPAM solution,the three-dimensional grid structure of nano-dispersion system increased structural stability and structural resilience of the system,which improved the properties of the system. O-SiO2 could increase the viscosity of KAPAM solution. The viscosity of nano-dispersion system composed of 0.15% KAPAM and 0.3% O-SiO2 was the highest,and the viscosity increasing rate was 25.73%. The viscosity retention of nano-dispersion system at 90 ℃ was 89.41%. When the mass concentration of NaCl and CaCl2 in the system was 60 g/L and 7 g/L,the viscosity retention was 72.13% and 65.74%, respectively. The nano-dispersion system could be stably dispersed for about 20 days at 90 ℃. Under the condition of 90 ℃ and salinity of 3.3×104 mg/L,injecting 0.5 PV nano-dispersion system into sand filling pipe could improve oil recovery by 23.5% on the basis of water flooding,which showed good temperature resistance and salt tolerance,long-term stability and oil displacement ability.

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WANG Kailu, YANG Huan, GAO Jie, LI Juncheng, YUAN Kun, YU Xiaorong, SU Gaoshen. Development and Performance Evaluation of Nano-dispersion System for Oil Displacement with Temperature Resistance and Salt Tolerance[J]. OILFIELD CHEMISTRY,2021,38(4):677-682.

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  • Online: January 29,2022
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