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Molecular Dynamics‑Based Simulation on Chemical Flooding Produced Emulsion Formation and Stabilization: A Critical Review

机译:基于分子动力学的化学洪水模拟产生乳液形成和稳定性:临界评论

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摘要

Oil–water emulsions are commonly encountered at various stages of petroleum production. For example, the alkaline–surfactant– polymer flooding is extensively used to promote emulsion formation and thus enhance oil recovery. However, the chemicals (e.g., polymers and surfactants) involved in this process can also stabilize the produced emulsions to adversely affect the subsequent processes of oil field surface systems. Therefore, a deep understanding of oil–water emulsions formation and stabilization is required to guarantee and promote oil field production. This work summarizes the current knowledge on (1) the formation of oil–water emulsions, (2) the influence of crude oil components (e.g., asphaltenes and resins), and (3) the above-mentioned water phase components on emulsions stability on a macroscopic scale. Moreover, considering the importance of molecular dynamics (MD) simulation for revealing interphase interactions and its advantages of microstructure characterization, we also probe the mechanism of such simulations, discuss the obtained results, and reveal progress in the elucidation of the mechanism of oil–water interface stabilization. MD simulation is shown to shed light on oil–water emulsification and demulsification processes and is concluded to be well suited for exploring molecular adsorption, droplet coalescence, and droplet separation on a microscale. However, future researchers should aim to circumvent the limitations of model simplification and single-factor simulation, integrate the characteristics of internal and external phase components, and consider external factors like temperature and pressure to comprehensively analyze crude oil emulsification and demulsification behavior. Furthermore, the potential role of bubbles on produced emulsion structure should be considered in future simulations.
机译:油水乳液通常在石油生产的各个阶段遇到。例如,碱性表面活性剂 - 聚合物泛抗广泛用于促进乳液形成,从而提高储存。然而,参与该方法的化学物质(例如,聚合物和表面活性剂)也可以稳定产生的乳液,对油田表面系统的后续过程产生不利影响。因此,需要深入了解油水乳液形成和稳定化,以保证和促进油田生产。这项工作总结了关于(1)油水乳液形成的现有知识,(2)原油组分(例如,沥青质和树脂)的影响,以及(3)上述水相组分对乳液稳定性宏观规模。此外,考虑到分子动力学(MD)模拟的重要性,用于揭示间相互作用及其显微结构表征的优点,我们还探讨了这种模拟的机制,讨论了所得的结果,并揭示阐明油水机制的进展界面稳定。 MD模拟显示出油水乳化和破乳过程的闪光,并且得出非常适合于探索微量尺寸的分子吸附,液滴聚结和液滴分离。然而,未来的研究人员应旨在规避模型简化和单因素模拟的局限性,整合内部和外部相位部件的特点,并考虑外部因素,如温度和压力,以全面分析原油乳化和破乳行为。此外,在将来的模拟中应考虑气泡对产生的乳液结构的潜在作用。

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  • 作者单位

    Key Laboratory for Enhanced Oil and Gas Recovery of the Ministry of Education Northeast Petroleum University Daqing 163318 Heilongjiang People’s Republic of China;

    Key Laboratory for Enhanced Oil and Gas Recovery of the Ministry of Education Northeast Petroleum University Daqing 163318 Heilongjiang People’s Republic of China;

    Key Laboratory for Enhanced Oil and Gas Recovery of the Ministry of Education Northeast Petroleum University Daqing 163318 Heilongjiang People’s Republic of China;

    Key Laboratory for Enhanced Oil and Gas Recovery of the Ministry of Education Northeast Petroleum University Daqing 163318 Heilongjiang People’s Republic of China;

    Massachusetts Institute of Technology Cambridge MA 02139 USA;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Interface formation energy; Radial distribution function; Diffusion coefficient; Produced emulsion; ASP flooding; Molecular dynamics;

    机译:界面形成能量;径向分布功能;扩散系数;产生乳液;asp洪水;分子动力学;
  • 入库时间 2022-08-18 21:04:43

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