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纳米颗粒增强型CO响应泡沫(NECRF)的实验研究与分子动力学模拟:对CO强化采油的启示

Experimental Investigations and MD Simulation on Nanoparticle-Enhanced CO-Responsive Foam (NECRF): Implications on CO-EOR.

作者信息

Gao Qi, Wang Bo, Trivedi Japan, Xu Xingguang, Liu Shuai

机构信息

Key Laboratory of Oil & Gas Exploration and Development Theory and Technology, China University of Geosciences (Wuhan), Wuhan, Hubei Province 430074, PR China.

School of Earth Resources, China University of Geosciences (Wuhan), Wuhan 430074, PR China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 21;16(33):43647-43660. doi: 10.1021/acsami.4c09052. Epub 2024 Aug 6.

Abstract

CO-responsive foam (CRF) is a highly promising candidate for CO-enhanced oil recovery (CO-EOR) because it displays higher stability than the surfactant-stabilized foam owing to the formation of robust wormlike micelles (WLMs) upon exposure to CO. In this work, the nanoparticle-enhanced CO-responsive foam (NECRF) was properly prepared using lauryl ether sulfate sodium (LES)/diethylenetriamine/nano-SiO, and its interfacial properties and EOR potential were experimentally and numerically assessed, aiming to explore the feasibility and effectiveness of NECRF as a novel CO-EOR technique. It was found that the interfacial expansion elastic modulus increased 6-fold after CO stimulation. The modulus continued to increase with the introduction of nano-SiO owing to the pronounced synergistic effect of WLMs and nanoparticles. In addition to increasing the viscosity of the foaming liquid, WLMs and nano-SiO enhanced the shearing resistance of the NECRF as well. Calculations demonstrated that both the coarsening rate and the size distribution uniformity coefficient of NECRF were markedly lower than that of the LES foam, which subsequently inhibited NECRF decay and greatly improved its dynamic stability. Besides, molecular dynamics simulation revealed that adding inorganic salts to NECRF could notably enhance the foaming performance due to the intensified hydration of surfactant head groups and reduced binding energy of neighboring molecules. Nuclear magnetic resonance-assisted core flooding experiments validated the exceptional capacity of NECRF to sweep the low-permeability region and improve the conformance profile. Overall, these findings may provide valuable insights into the development and application of novel materials and strategies for the CO-EOR.

摘要

CO响应性泡沫(CRF)是CO强化采油(CO-EOR)中极具潜力的候选材料,因为与表面活性剂稳定的泡沫相比,它具有更高的稳定性,这是由于在接触CO时会形成坚固的蠕虫状胶束(WLM)。在这项工作中,使用月桂基醚硫酸钠(LES)/二乙烯三胺/纳米SiO₂ 制备了纳米颗粒增强的CO响应性泡沫(NECRF),并通过实验和数值方法评估了其界面性质和EOR潜力,旨在探索NECRF作为一种新型CO-EOR技术的可行性和有效性。研究发现,CO刺激后界面扩张弹性模量增加了6倍。由于WLM和纳米颗粒的显著协同效应,随着纳米SiO₂ 的引入,模量持续增加。除了增加发泡液的粘度外,WLM和纳米SiO₂ 还增强了NECRF的抗剪切性。计算表明,NECRF的粗化速率和尺寸分布均匀系数均明显低于LES泡沫,这随后抑制了NECRF的衰减并大大提高了其动态稳定性。此外,分子动力学模拟表明,向NECRF中添加无机盐可显著提高发泡性能,这是由于表面活性剂头部基团的水合作用增强以及相邻分子的结合能降低。核磁共振辅助岩心驱替实验验证了NECRF在扫过低渗透区域和改善波及系数方面的卓越能力。总体而言,这些发现可能为新型材料的开发和应用以及CO-EOR策略提供有价值的见解。

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