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氧化铝纳米颗粒的相位相关介电特性在电磁辅助强化采油中的作用

Role of Phase-Dependent Dielectric Properties of Alumina Nanoparticles in Electromagnetic-Assisted Enhanced Oil Recovery.

作者信息

Adil Muhammad, Lee Kean Chuan, Zaid Hasnah Mohd, Manaka Takaaki

机构信息

Department of Fundamental and Applied Sciences, Universiti Teknologi PETRONAS Bandar Seri Iskandar, Tronoh 32610, Perak Darul Ridzuan, Malaysia.

Department of Electrical and Electronic Engineering, Tokyo Institute of Technology, 2-12-1, O-okayama, Meguro-ku, Tokyo 152-8552, Japan.

出版信息

Nanomaterials (Basel). 2020 Oct 6;10(10):1975. doi: 10.3390/nano10101975.

Abstract

The utilization of metal-oxide nanoparticles in enhanced oil recovery (EOR) has generated considerable research interest to increase the oil recovery. Among these nanoparticles, alumina nanoparticles (AlO-NPs) have proved promising in improving the oil recovery mechanism due to their prominent thermal properties. However, more significantly, these nanoparticles, coupled with electromagnetic (EM) waves, can be polarized to reduce water/oil mobility ratio and create disturbances at the oil/nanofluid interface, so that oil can be released from the reservoir rock surfaces and travelled easily to the production well. Moreover, alumina exists in various transition phases (γ, δ, θ, κ, β, η, χ), providing not only different sizes and morphologies but phase-dependent dielectric behavior at the applied EM frequencies. In this research, the oil recovery mechanism under EM fields of varying frequencies was investigated, which involved parameters such as mobility ratio, interfacial tension (IFT) and wettability. The displacement tests were conducted in water-wet sandpacks at 95 °C, by employing crude oil from Tapis. Alumina nanofluids (AlO-NFs) of four different phases (α, κ, θ and γ) and particle sizes (25-94.3 nm) were prepared by dispersing 0.01 wt. % NPs in brine (3 wt. % NaCl) together with SDBS as a dispersant. Three sequential injection scenarios were performed in each flooding scheme: (i) preflushes brine as a secondary flooding, (ii) conventional nano/EM-assisted nanofluid flooding, and (iii) postflushes brine to flush NPs. Compared to conventional nanofluid flooding (3.03-11.46% original oil in place/OOIP) as incremental oil recovery, EM-assisted nanofluid flooding provided an increase in oil recovery by approximately 4.12-12.90% of OOIP for different phases of alumina. It was established from these results that the recovery from EM-assisted nanofluid flooding is itself dependent on frequency, which is associated with good dielectric behavior of NPs to formulate the oil recovery mechanism including (i) mobility ratio improvement due to an electrorheological (ER) effect, (ii) interfacial disturbances by the oil droplet deformation, and (iii) wettability alteration by increased surface-free energy.

摘要

金属氧化物纳米颗粒在强化采油(EOR)中的应用引起了大量研究兴趣,旨在提高原油采收率。在这些纳米颗粒中,氧化铝纳米颗粒(AlO-NPs)因其突出的热性能,在改善采油机理方面已被证明具有潜力。然而,更重要的是,这些纳米颗粒与电磁波(EM)结合时,能够被极化,从而降低水/油流度比,并在油/纳米流体界面产生扰动,使原油能够从储层岩石表面释放出来,并轻松流向生产井。此外,氧化铝存在多种过渡相(γ、δ、θ、κ、β、η、χ),这不仅提供了不同的尺寸和形态,还在施加的EM频率下呈现出与相相关的介电行为。在本研究中,对不同频率EM场下的采油机理进行了研究,涉及流度比、界面张力(IFT)和润湿性等参数。驱替试验在95℃的水湿填砂管中进行,使用的原油来自塔皮斯原油。通过将0.01 wt.%的纳米颗粒分散在盐水(3 wt.% NaCl)中,并加入十二烷基苯磺酸钠作为分散剂,制备了四种不同相(α、κ、θ和γ)和粒径(25 - 94.3 nm)的氧化铝纳米流体(AlO-NFs)。在每个驱替方案中进行了三个连续的注入步骤:(i)作为二次驱替的前置盐水冲洗,(ii)常规的纳米/EM辅助纳米流体驱替,以及(iii)后置盐水冲洗以冲洗纳米颗粒。与常规纳米流体驱替(原地原油的3.03 - 11.46%/OOIP)作为增产原油采收率相比,EM辅助纳米流体驱替使不同相的氧化铝的原油采收率提高了约4.12 - 12.90%的OOIP。从这些结果可以确定,EM辅助纳米流体驱替的采收率本身取决于频率,这与纳米颗粒良好的介电行为相关,从而形成了包括(i)由于电流变(ER)效应导致的流度比改善,(ii)油滴变形引起的界面扰动,以及(iii)表面自由能增加导致润湿性改变的采油机理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2b4/7601366/0ceb89a3d0b5/nanomaterials-10-01975-g0A1.jpg

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