Wang Chen, Wang Xia, Qiu Liewei
Key Laboratory of Auxiliary Chemistry & Technology for Chemical Industry, Ministry of Education, Shaanxi University of Science & Technology Xi'an 710021 P. R. China
RSC Adv. 2018 May 22;8(33):18734-18744. doi: 10.1039/c8ra03144d. eCollection 2018 May 17.
A novel fluorinated anionic fenugreek gum (FAFG) was obtained with excellent solution, gel, and broken-gel liquid properties in tertiary oil recovery, which were studied in detail and fenugreek gum (FG) and anionic fenugreek gum (AFG) were used as contrast samples. The results show that, compared to the FG and AFG solution properties, FAFG shows self-assembly properties, and inclusion of more fluorinated groups further reduced the critical associating concentration, yielding better associating properties. Compared to the FG and AFG gels, the FAFG gels exhibit good temperature resistance, shear resistance, rheological behaviors, and excellent salt tolerance. These improvements are attributed to the introduction of fluorinated groups and sulfonic groups. Compared to the FG and AFG broken-gel solutions, the FAFG broken-gel solutions presented slightly higher apparent viscosities. Moreover, the FAFG broken-gel solutions had profoundly lower surface tension and interfacial tension and extremely lower formation damage rates. They can hence serve as clean-up additives themselves after gel breaking. This automatically improves the flowback efficiency and reduces the formation damage. The residue rates of the FAFG broken-gel liquids were lower than those of the AFG and FG broken-gel liquids. Combined with its other excellent properties, FAFG would be an ideal component in fracturing gel.
一种新型氟化阴离子胡芦巴胶(FAFG)在三次采油中具有优异的溶液、凝胶和破胶液性能,以胡芦巴胶(FG)和阴离子胡芦巴胶(AFG)作为对照样品对其进行了详细研究。结果表明,与FG和AFG的溶液性能相比,FAFG具有自组装性能,更多氟化基团的引入进一步降低了临界缔合浓度,使其具有更好的缔合性能。与FG和AFG凝胶相比,FAFG凝胶具有良好的耐温性、抗剪切性、流变行为和优异的耐盐性。这些改进归因于氟化基团和磺酸基团的引入。与FG和AFG破胶溶液相比,FAFG破胶溶液的表观粘度略高。此外,FAFG破胶溶液的表面张力和界面张力极低,地层损害率也极低。因此,它们在破胶后本身可作为清理添加剂。这自动提高了返排效率并减少了地层损害。FAFG破胶液的残渣率低于AFG和FG破胶液。结合其其他优异性能,FAFG将是压裂凝胶中的理想组分。