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解锁油藏潜力:低盐水驱油、纳米颗粒与表面活性剂在提高采收率中的协同作用——综述

Reservoir Potential Unlocked: Synergies Between Low-Salinity Water Flooding, Nanoparticles and Surfactants in Enhanced Oil RecoveryA Review.

作者信息

Mumbere Walidi, Sagala Farad, Gupta Uttam, Bbosa Denis

机构信息

Department of Energy, Minerals and Petroleum Engineering, Faculty of Applied Sciences and Technology, Mbarara University of Science and Technology (MUST), Kihumuro Campus, 7 km off Mbarara-Kasese Road, PO Box 1410, Mbarara,Uganda.

Department of Chemical and Petroleum Engineering, University of Calgary, 2500 University Drive NW, Calgary, Alberta T2N 1N4, Canada.

出版信息

ACS Omega. 2025 Jul 14;10(29):31216-31261. doi: 10.1021/acsomega.5c02533. eCollection 2025 Jul 29.

Abstract

This review explores the synergistic application of low-salinity water flooding (LSWF), nanoparticles, and surfactants in enhanced oil recovery (EOR), emphasizing their combined potential to address modern oil production challenges. It highlights the ability of LSWF to alter reservoir wettability, improve sweep efficiency, nanoparticles to enhance fluid mobility, and reduce interfacial tension, and surfactants to lower the interfacial tension and promote emulsification. All of this aim to provide practical, easy-to-use, and sustainable solutions for oil recovery. The review discusses existing research gaps in the long-term stability of nanoparticle-surfactant complexes, site-specific differences in rock-fluid interactions, and economic viability across diverse reservoirs. The review summarizes experimental findings, demonstrating recovery rates of 45-55% for nanoparticles, 50-60% for surfactants, and 40-50% for LSWF with improvements of 75-82% through this integrated approach. Additionally, the review addresses technological advancements, environmental considerations, and economic feasibility, highlighting challenges such as nanoparticle agglomeration and surfactant adsorption. A bibliographic analysis of global research trends, mechanisms, and field applications underscores the importance of interdisciplinary collaboration in optimizing this strategy for sustainable and efficient EOR processes. The findings aim to guide researchers and industry professionals in leveraging the synergistic effects of these methods to maximize oil recovery and reduce environmental footprints with a proposition to develop advanced characterization techniques, and verifying practicality through field implementation studies.

摘要

本综述探讨了低盐水驱油(LSWF)、纳米颗粒和表面活性剂在提高采收率(EOR)中的协同应用,强调了它们在应对现代石油生产挑战方面的综合潜力。它突出了低盐水驱油改变储层润湿性、提高波及效率的能力,纳米颗粒增强流体流动性、降低界面张力的能力,以及表面活性剂降低界面张力和促进乳化的能力。所有这些旨在为石油采收提供实用、易用且可持续的解决方案。该综述讨论了纳米颗粒 - 表面活性剂复合物长期稳定性、岩石 - 流体相互作用的特定位置差异以及不同储层的经济可行性等现有研究空白。综述总结了实验结果,表明纳米颗粒的采收率为45 - 55%,表面活性剂为50 - 60%,低盐水驱油为40 - 50%,通过这种综合方法采收率提高了75 - 82%。此外,该综述还涉及技术进步、环境考量和经济可行性,突出了纳米颗粒团聚和表面活性剂吸附等挑战。对全球研究趋势、机理和现场应用的文献分析强调了跨学科合作在优化这一可持续高效提高采收率策略中的重要性。研究结果旨在指导研究人员和行业专业人士利用这些方法的协同效应,以最大限度地提高石油采收率并减少环境足迹,同时提出开发先进表征技术并通过现场实施研究验证实用性的建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1385/12311719/3d51819663bd/ao5c02533_0001.jpg

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