Title : 
Synthesis and Assessment of a Novel AM-co-AMPS Polymer for Enhanced Oil Recovery (EOR)
         
        
            Author : 
Li Qi ; Pu Wanfen ; Wang Yabo ; Zhao Tianhong
         
        
            Author_Institution : 
Grad. Sch., State Key Lab. of Oil & Gas Reservoir Geol. & Exploitation, SWPU, Chengdu, China
         
        
        
        
        
        
            Abstract : 
This paper focuses on the polymerization and property assessment of water-soluble AM-co-AMPS polymers for enhanced oil recovery. The AM-co-AMPS polymers are synthesized by acrylamide(AM) and 2-acrylamido-2-methyl-1-propanesulfonic acid(AMPS) in aqueous solution. The synthesis is initiated by (NH4)2S2O8 and NaHSO3 redox system. The effects of initiator concentration, monomers´ concentration, AMPS/AM ratio and the polymerization temperature on the synthetic polymer viscosity are studied based on the single factor experiment. The optimal synthesis conditions of AM-co-AMPS polymer are determined according to golden section method. Property assessment is carried out for AM-co-AMPS polymers under different salinity and temperature, and results are compared with Daqing´s HPAM. The optimal synthesis conditions are initiator concentration of 3mmol%, monomers´ concentration of 20%, AMPS/AM ratio of 20%:80%, and the polymerization temperature of 45.5°C. The AM-co-AMPS polymer synthesized under the optimal synthesis conditions shows good performance under high salinity and temperature, and can withstand the harsh environments of oilfields.
         
        
            Keywords : 
oil technology; polymerisation; polymers; viscosity; (NH4)2S2O8; 2-acrylamido-2-methyl-1-propanesulfonic acid; AM-co-AMPS polymer; EOR; NaHSO3; acrylamide; aqueous solution; enhanced oil recovery; oilfields; polymer viscosity; polymerization; property assessment; redox system; temperature 45.5 degC; Aging; Polymers; Reservoirs; Temperature; Temperature measurement; Thermal stability; Viscosity; 2-acrylamido-2-methyl-1-propanesulfonic acid; acrylamide; flooding; heat-resistant and salt-tolerant; polymer;
         
        
        
        
            Conference_Titel : 
Computational and Information Sciences (ICCIS), 2013 Fifth International Conference on
         
        
            Conference_Location : 
Shiyang
         
        
        
            DOI : 
10.1109/ICCIS.2013.267