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纳米颗粒在完井液中作为增产措施和抑制黏土膨胀损害双重效果处理剂的应用:纳米颗粒化学性质影响的评估

Use of Nanoparticles in Completion Fluids as Dual Effect Treatments for Well Stimulation and Clay Swelling Damage Inhibition: An Assessment of the Effect of Nanoparticle Chemical Nature.

作者信息

López Daniel, Chamat Nicolas M, Galeano-Caro Dahiana, Páramo Liliana, Ramirez Diego, Jaramillo David, Cortés Farid B, Franco Camilo A

机构信息

Grupo de Investigación en Fenómenos de Superficie-Michael Polanyi, Departamento de Procesos y Energía, Facultad de Minas, Universidad Nacional de Colombia-Sede Medellín, Medellin 050034, Colombia.

Parex Resources Colombia Ltd., Bogota 110111, Colombia.

出版信息

Nanomaterials (Basel). 2023 Jan 18;13(3):388. doi: 10.3390/nano13030388.

Abstract

The objective of this study is to evaluate the role of nanoparticles with different chemical structures in completion fluids (CF) in providing a positive dual effect for well stimulation and clay swelling damage inhibition. Six types of commercial (C) or synthesized (S) nanoparticles have been incorporated into a commercial completion fluid. Doses varied between 100 and 500 mg·L. CF-nanoparticles were evaluated by fluid-fluid, fluid-nanoparticle, and fluid-rock interactions. The adsorption isotherms show different degrees of affinity, which impacts on the reduction of the interfacial tension between the CF and the reservoir fluids. Fluid-fluid interactions based on interfacial tension (IFT) measurements suggest that positively charged nanoparticles exhibit high IFT reductions. Based on contact angle measurements, fluid-rock interactions suggest that ZnO-S, SiO-C, SiO-S, and ZrO can adequately promote water-wet rock surfaces compared with other nanomaterials. According to the capillary number, ZnO-S and MgO-S have a higher capacity to reduce both interfacial and surface restrictions for crude oil production, suggesting that completion fluid with nanoparticles (NanoCF) can function as a stimulation agent. The clay swelling inhibition test in the presence of ZnO-S-CTAB and MgO-S-CTAB nanoparticles showed a 28.6% decrease in plastic viscosity (PV), indicating a reduction in clay swelling. The results indicate that a high-clay environment can meet the completion fluid's requirements. They also indicate that the degree of clay swelling inhibition of the nanoparticles depends on their chemical nature and dosage. Finally, displacement tests revealed that CF with nanoparticles increased the oil linear displacement efficiency.

摘要

本研究的目的是评估具有不同化学结构的纳米颗粒在完井液(CF)中对增产措施和抑制粘土膨胀损害提供积极双重作用的效果。六种商用(C)或合成(S)纳米颗粒已被添加到一种商用完井液中。剂量在100至500 mg·L之间变化。通过流体-流体、流体-纳米颗粒和流体-岩石相互作用对含纳米颗粒的完井液进行了评估。吸附等温线显示出不同程度的亲和力,这对降低完井液与储层流体之间的界面张力有影响。基于界面张力(IFT)测量的流体-流体相互作用表明,带正电的纳米颗粒能显著降低界面张力。基于接触角测量,流体-岩石相互作用表明,与其他纳米材料相比,ZnO-S、SiO-C、SiO-S和ZrO能充分促进岩石表面的水润湿性。根据毛细管数,ZnO-S和MgO-S在降低原油生产的界面和表面限制方面具有更高的能力,这表明含纳米颗粒的完井液(NanoCF)可作为增产剂。在存在ZnO-S-CTAB和MgO-S-CTAB纳米颗粒的情况下进行的粘土膨胀抑制试验表明,塑性粘度(PV)降低了28.6%,表明粘土膨胀有所减少。结果表明,高粘土环境能够满足完井液的要求。它们还表明,纳米颗粒对粘土膨胀的抑制程度取决于其化学性质和用量。最后,驱替试验表明,含纳米颗粒的完井液提高了油的线性驱替效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34e8/9921731/86edf60ca9ef/nanomaterials-13-00388-g001.jpg

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