Open Access
Issue
E3S Web Conf.
Volume 625, 2025
5th International Conference on Environment Resources and Energy Engineering (ICEREE 2025)
Article Number 02021
Number of page(s) 5
Section Environmental Pollution Control and Ecological Restoration
DOI https://doi.org/10.1051/e3sconf/202562502021
Published online 17 April 2025
  1. Wang, S., Wang, J., Liu, H.Q. et al.(2023)Molecular simulation on the detachment mechanism of residual oil with the aid of surfactant. J. Acta Petrol., Sin. 44(03):518-533. [Google Scholar]
  2. Kang, D.Y., Lin, H., Niu, D.P. et al. (2023) Research progress and prospects of processing technology and characteristics of oily sludge. J. J. Environ. Sci.43(08):4106-120. DOI:10.19674/j.cnki.issn1000-6923.2023.0132. [Google Scholar]
  3. Liu, J., Zhang, Y. X., Peng, K.M., et al. (2021) A review of the interfacial stability mechanism of aging oily sludge: Heavy components, inorganic particles, and their synergism. J. J. Hazard. Mater.,415:125624. DOI10.1016/j.jhazmat.2021.125624 [CrossRef] [Google Scholar]
  4. Johnson, C. F., (1983) Status of caustic and emulsion methods. J.J. Petrl. Technol.1581-1590. [Google Scholar]
  5. Ma, Y., Liu, H.B., (2023)Exploitation strategy of weak ASP.J. Chem. Eng. Equip., (07):59-60+94.DOI:10.19566/j.cnki.cn35-1285/tq.2023.07.056. [Google Scholar]
  6. Qin, H., Ye R. Q., Mu B.Z.,(2013) Emulsified activated component of oil and oil displacement mechanism of alkalic system. J. Oilfield Chem. 30(03):464-470.DOI:10.19346/j.cnki.1000-4092.2013.03.034. [Google Scholar]
  7. Hou, X. Q., Zhang, F. X., Hu. G. J., et al.(2024) Research status and prospect of surfacants for imbibition flooding. J. Chem. Eng.,38(01):70-74.DOI:10.16247/j.cnki.23-1171/tq.20240170. [Google Scholar]
  8. Bao, Q. H., Huang, L.X., Xiu J. L., et al. (2021)Research progress on biotreatment technology of oily sludge in oil and gas fields. J. Chem. Ind. Eng. Prog., 40(05): 2762 - 2773. DOI: 10.16085/j.issn.1000 - 6613.2020 – 1299 [Google Scholar]
  9. Ding, F.,(2022) Research on the properties of solid/liquid interfaces under different wettability reservoir conditions. D. Shandong University. DOI: 10.27272/d.cnki.gshdu.2022.003572 [Google Scholar]
  10. Zhao, X. Z, Liao, G. Z., Liu, W. D., et al.(2023) New advances in surfactant EOR mechanism: micellar solubilization and insitu emulsification. J. Sci. Sin. Chim., 53:1088–1103, DOI:10.1360/SSC-2023-0018 [Google Scholar]
  11. Yarveicy, H., Javaheri,A.,(2017) Application of Lauryl Betaine in enhanced oil recovery: A comparative study in micromodel. J. Petrol. 5:123-127, http://dx.doi.org /10.1016/j.petlm.2017.09.004 [Google Scholar]
  12. Jiang, Y. H.,(2014) Adsorption Performance of Betaine Amphoteric Surfactants on Sandstone Surface. D. Daqing: Northeast Petroleum University. [Google Scholar]
  13. Shi S. L., Wang, L.S., Jin, Y. X., et al.(2014) Application Progress and Developmental Tendency of Emulsion System Used in Flooding, Profile Control and Water Plugging. J. Oilfield Chem., 31(01):141-145.DOI:10.19346/j.cnki.1000-4092.2014.01.033. [Google Scholar]
  14. Hou, J. J., (2022)Physical-chemical interface modification enhanced carbonate heavy oil solid separation process study. D. Tianjin University. DOI:10.27356/d.cnki.gtjdu.2022.000009. [Google Scholar]
  15. Zhao, F. L., Yue, X.A., Hou, J. R., et al.(2008) Emulsification of ASP system and Daqing crude oil and its influencing factors. J. Pet. Geol. Recovery Effic., (03):66-69+115. [Google Scholar]
  16. Wang, S., Song, W.L., Jiang, X.Z., et al.(2018) Effects of Alkali and Surfactant on the Stability and Rheology of Xinjiang Heavy Oil Emulsion. J. Spec. Petrochem., 35(05): 15-20. [Google Scholar]
  17. Wang, H. Z., Yang, J. H., Zhu, H. J., (1997)Influence of interfacial tension in alkaline water flooding. J. Oilfield Chem,(01):62-65. DOI:10.19346/j.cnki.1000-4092.1997.01.014. [Google Scholar]
  18. Wang, C. Y., Liu, Q., Peng, B., et al.(2019) Review on surfactin biosurfactant and its performance of enhanced oil recovery. J. Chem. Ind. Eng. Prog.,38(09):4012-4019.DOI: 10.16085/j.issn.1000-6613.2019-0005. [Google Scholar]
  19. Yao, T. Y., Li, J. S., Zhou, G. H.,(2008) Analysis of parameters influencing oil displacement efficiency of oil displacement agent. J. J. China Univ. Pet., Ed. Nat. Sci.,(03):99-102. [Google Scholar]
  20. Li, X.G., (2018)Study on non-emulsified chemical cleaning treatment of oily sludge. D. Chengdu: SouthWest Petroleum University. [Google Scholar]
  21. Yuan, G. Y., (2019)Research progress of the emulsification mechanism in chemical flooding and the new technology of emulsification displacement. J. China Surfactant Deterg. Cosmet.,49(01):44-50. [Google Scholar]
  22. Wang, H.,(2014) Interaction with surfactin and cationic surfactant. D. Shanghai: East China University of Science and Technology. [Google Scholar]
  23. Wang, D. F., Cui, X. D., Yin, H.F., et al. (2011)Initial exploration of the screening of surfactants for oil displacement. J. Pet. Geol. Recovery Effic,18(04):57-60+115.DOI:10.13673/j.cnki.cn37-1359/te.2011.04.018. [Google Scholar]
  24. Sun, Z., Lu, X. G., Guo, Q., et al.(2016) Research on Emulsification of Weak-Alkali Ternary Compound System and Its Effect on Oil Displacement Efficiency. J. J. Xi'an Shiyou Univ., Nat. Sci. Ed.,31(04):82-87+114. [Google Scholar]
  25. Wang, C. Q.,(2023) Study on the Influencing Factors of Emulsification and Interfacial Tension Properties in Weak Base ASP System. J. Guangdong Chem. Ind.,50(17):49-52. [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.