Liu Zhinan, Zhang Guicai, Yuan Rongkai, Wang Xiang
College of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, China.
J Phys Chem B. 2024 Nov 7;128(44):10950-10960. doi: 10.1021/acs.jpcb.4c05462. Epub 2024 Oct 24.
With the advancement of technologies for developing tight and shale reservoirs, nonionic surfactants have garnered significant attention due to their remarkable properties. The structure of these surfactants plays a crucial role in determining the characteristics of the oil-water interface, particularly influencing emulsification behavior and crude oil recovery. This study investigates the effect of varying the number of hydrophilic polar groups ( = 10, 20, 30, 50) in octylphenol polyoxyethylene ether (OP-) on its adsorption behavior at the -hexadecane-water interface using molecular dynamics simulation. The impact of these variations on interfacial properties was further analyzed through measurements of interfacial tension and observations of emulsion droplet morphology. The study results indicate that variations in the number of hydrophilic polar groups significantly affect interfacial properties. Increasing the number of hydrophilic polar groups led to a notable increase in the thickness of the -hexadecane or water phase, as well as the thickness of the water or oil layer and the surfactant layer. Moreover, when the number of hydrophilic polar groups reached 20, the OP- molecules exhibited a more curled conformation at the interface, enhancing their ability to encapsulate water and resulting in a decrease in the diffusion coefficient of the molecules in each phase. Additionally, interfacial tension was found to be positively correlated with the number of hydrophilic polar groups and remained unchanged beyond a certain emulsion diameter. This study provides a theoretical basis and reference data for optimizing surfactant structures to improve crude oil recovery.
随着致密油和页岩油藏开发技术的进步,非离子表面活性剂因其卓越性能而备受关注。这些表面活性剂的结构在决定油水界面特性方面起着关键作用,尤其会影响乳化行为和原油采收率。本研究采用分子动力学模拟方法,研究了辛基酚聚氧乙烯醚(OP-)中亲水性极性基团数量( = 10、20、30、50)的变化对其在正十六烷-水界面吸附行为的影响。通过测量界面张力和观察乳液滴形态,进一步分析了这些变化对界面性质的影响。研究结果表明,亲水性极性基团数量的变化显著影响界面性质。增加亲水性极性基团数量导致正十六烷或水相厚度、水或油层以及表面活性剂层厚度显著增加。此外,当亲水性极性基团数量达到20时,OP-分子在界面处呈现出更卷曲的构象,增强了其包裹水的能力,并导致分子在各相中的扩散系数降低。另外,发现界面张力与亲水性极性基团数量呈正相关,并且在乳液直径超过一定值后保持不变。本研究为优化表面活性剂结构以提高原油采收率提供了理论依据和参考数据。