4.6 Article

Property evaluation of synthesized anionic-nonionic gemini surfactants for chemical enhanced oil recovery

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ELSEVIER
DOI: 10.1016/j.colsurfa.2019.123800

Keywords

Anionic-nonionic gemini surfactant; Surface/interfacial properties; Wettability; Chemical; EOR

Funding

  1. National Major Science and Technology Projects of China [2017ZX05009-004]
  2. Science Foundation of China University of Petroleum, Beijing [2462015YJRC033]

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Gemini surfactant has a good application prospect in the field of enhanced oil recovery (EOR) due to the advantages of high interfacial activity, low critical micelle concentration (CMC) and good wettability alteration. In this paper, ethylenediamine, sodium 2-bromoethanesulphonate and fatty alcohol polyoxyethylene ether are used as raw materials to synthesize a new kind of anionic-nonionic gemini surfactant which hydrophilic group consists of two parts nonionic and anionic groups through a mild reaction of amination. The surface tension, interfacial tension, wettability and oil displacement of the synthesized anionic-nonionic gemini surfactants were evaluated. Parameters of surfactant the saturated adsorption amount Gamma(max) and the minimum molecular occupied area A(min) were calculated. The structures of the optimal product were characterized by IR and H-1-NMR. The results showed that the critical surface tension of the synthesized anionic-nonionic gemini surfactant was as low as 28.94 mN/m, and the critical micelle concentration was 4.9 x 10(-5) mol/L. An interfacial tension between the aqueous solution of 600 mg/L optimal surfactant and Dagang crude oil was 0.0804 mN/m. 1500 mg/L aqueous solution can reduce the surface contact angle of lipophilic low permeability core from 144.5 degrees to 71.5 degrees. The anionic-nonionic gemini surfactant (1000 mg/L; 0.4 PV) can improve oil displacement efficiency by 7.03%. The current study opens a new pathway for designing enhancing oil recovery applicable gemini surfactants with excellent performance, wide source of raw materials and low dosage.

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