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January 14, 2026Nanomaterials3 citationsOpen Access

Study on the Dual Enhancement Effect of Nanoparticle–Surfactant Composite Systems on Oil Recovery Rates

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GLGen LiBHBin HuangYYYong Yuan

Key Points

  • To evaluate the effectiveness of nanoparticle–surfactant composite systems in enhancing oil recovery rates.
  • Used SiO2 nanoparticles and alkylphenol polyoxyethylene ether in composite systems.
  • Conducted core displacement experiments to assess recovery rates.
  • Compared oil recovery rates of composite system with nanoparticles and surfactant alone.
  • Nanoparticle-surfactant composite achieved a recovery rate of 71.5%.
  • Using nanoparticles alone resulted in a 46.8% recovery rate.
  • Using surfactant alone achieved a recovery rate of 52.3%.

Abstract

Nanoparticle–surfactant composite flooding systems significantly enhance oil recovery through synergistic effects. When the optimal ratio of SiO2 nanoparticles to nonionic surfactant alkylphenol polyoxyethylene ether (OP-10) in the composite system is 3:2, the oil–water interfacial tension (IFT) decreases to 0.005 mN/m, and the contact angle changes from the original 128° to 42°, achieving effective wettability alteration. Core displacement experiments demonstrate that the recovery rate using nanoparticles alone is 46.8%, and using surfactant alone is 52.3%, while the composite system achieves 71.5%, representing a 39.2 percentage point improvement over water flooding. The composite system operates through multiple mechanisms including interfacial tension reduction, wettability alteration, stable emulsion formation, and enhanced sweep efficiency. The wedging effect of nanoparticles at pore throats and the interfacial activity of surfactants form significant synergistic enhancement, providing a new technical pathway for efficient development of low-permeability reservoirs.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6966e72413bf7a6f02bff7cdhttps://doi.org/10.3390/nano16020102
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