润湿
表面张力
吸附
肺表面活性物质
背景(考古学)
单层
相(物质)
化学工程
材料科学
分子动力学
溶剂化
化学
化学物理
分子
纳米技术
热力学
有机化学
计算化学
复合材料
地质学
物理
工程类
古生物学
作者
Jihui Jia,Shu Yang,Jingwei Li,Yunfeng Liang,Rongjuan Li,Takeshi Tsuji,Ben Niu,Bo Peng
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2024-07-08
卷期号:29 (13): 3230-3230
被引量:11
标识
DOI:10.3390/molecules29133230
摘要
Surfactants play a crucial role in tertiary oil recovery by reducing the interfacial tension between immiscible phases, altering surface wettability, and improving foam film stability. Oil reservoirs have high temperatures and high pressures, making it difficult and hazardous to conduct lab experiments. In this context, molecular dynamics (MD) simulation is a valuable tool for complementing experiments. It can effectively study the microscopic behaviors (such as diffusion, adsorption, and aggregation) of the surfactant molecules in the pore fluids and predict the thermodynamics and kinetics of these systems with a high degree of accuracy. MD simulation also overcomes the limitations of traditional experiments, which often lack the necessary temporal-spatial resolution. Comparing simulated results with experimental data can provide a comprehensive explanation from a microscopic standpoint. This article reviews the state-of-the-art MD simulations of surfactant adsorption and resulting interfacial properties at gas/oil-water interfaces. Initially, the article discusses interfacial properties and methods for evaluating surfactant-formed monolayers, considering variations in interfacial concentration, molecular structure of the surfactants, and synergistic effect of surfactant mixtures. Then, it covers methods for characterizing microstructure at various interfaces and the evolution process of the monolayers' packing state as a function of interfacial concentration and the surfactants' molecular structure. Next, it examines the interactions between surfactants and the aqueous phase, focusing on headgroup solvation and counterion condensation. Finally, it analyzes the influence of hydrophobic phase molecular composition on interactions between surfactants and the hydrophobic phase. This review deepened our understanding of the micro-level mechanisms of oil displacement by surfactants and is beneficial for screening and designing surfactants for oil field applications.
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