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盐度对用于强化采油的羟基磷灰石纳米颗粒驱油的影响:一项机理研究

Effect of Salinity on Hydroxyapatite Nanoparticles Flooding in Enhanced Oil Recovery: A Mechanistic Study.

作者信息

Ngouangna Eugene N, Jaafar Mohd Zaidi, Norddin Mnam, Agi Augustine, Yakasai Faruk, Oseh Jeffrey O, Mamah Stanley C, Yahya Muftahu N, Al-Ani Muhanad

机构信息

Departmentii of Petroleum Engineering, School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, Johor Bahru 81310, Malaysia.

Institute for Oil and Gas (IFOG), Universiti Technology Malaysia, 81310 Johor Bahru, Malaysia.

出版信息

ACS Omega. 2023 May 10;8(20):17819-17833. doi: 10.1021/acsomega.3c00695. eCollection 2023 May 23.

Abstract

Fluid-fluid interactions can affect any enhanced oil recovery (EOR) method, including nanofluid (NF) brine-water flooding. Flooding with NFs changes wettability and lowers oil-water interfacial tension (IFT). Preparation and modification affect the nanoparticle (NP) performance. Hydroxyapatite (HAP) NPs in EOR are yet to be properly verified. HAP was synthesized in this study using co-precipitation and in situ surface functionalization with sodium dodecyl sulfate in order to investigate its impact on EOR processes at high temperatures and different salinities. The following techniques were employed, in that sequence, to verify its synthesis: transmission electron microscopy, zeta potential, thermogravimetric analysis, Fourier transform infrared spectroscopy, X-ray diffraction, particle size analysis, and energy-dispersive X-ray spectra. The outcomes showed the production of HAP, with the particles being evenly dispersed and stable in aqueous solution. The particles' surface charge increased from -5 to -27 mV when the pH was changed from 1 to 13. The HAP NFs at 0.1 wt % altered the wettability of sandstone core plugs from oil-wet at 111.7 to water-wet at 9.0 contact angles at salinity ranges of 5000 ppm to 30,000 ppm. Additionally, the IFT was reduced to 3 mN/m HAP with an incremental oil recovery of 17.9% of the initial oil in place. The HAP NF thus demonstrated excellent effectiveness in EOR through IFT reduction, wettability change, and oil displacement in both low and high salinity conditions.

摘要

流体-流体相互作用会影响任何提高采收率(EOR)的方法,包括纳米流体(NF)盐水驱油。用纳米流体驱油会改变润湿性并降低油水界面张力(IFT)。制备和改性会影响纳米颗粒(NP)的性能。用于提高采收率的羟基磷灰石(HAP)纳米颗粒尚未得到充分验证。本研究采用共沉淀法和十二烷基硫酸钠原位表面功能化法合成HAP,以研究其在高温和不同盐度下对提高采收率过程的影响。按以下顺序采用以下技术来验证其合成:透射电子显微镜、zeta电位、热重分析、傅里叶变换红外光谱、X射线衍射、粒度分析和能量色散X射线光谱。结果表明合成出了HAP,颗粒在水溶液中均匀分散且稳定。当pH值从1变为13时,颗粒的表面电荷从-5 mV增加到-27 mV。在盐度范围为5000 ppm至30000 ppm时,0.1 wt%的HAP纳米流体将砂岩岩心柱塞的润湿性从油湿(接触角为111.7°)改变为水湿(接触角为9.0°)。此外,界面张力降至3 mN/m,HAP使原油采收率提高了原地初始油量的17.9%。因此,HAP纳米流体通过降低界面张力、改变润湿性以及在低盐度和高盐度条件下驱油,在提高采收率方面表现出优异的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b923/10210169/aa5007040e6a/ao3c00695_0002.jpg

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