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首页> 外文期刊>Annals of the American Thoracic Society >Experimental investigation into Fe3O4/SiO2 nanoparticle performance and comparison with other nanofluids in enhanced oil recovery
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Experimental investigation into Fe3O4/SiO2 nanoparticle performance and comparison with other nanofluids in enhanced oil recovery

机译:Fe3O4 / SiO2纳米粒子性能的实验研究与其他纳米流体在增强的溢油中的比较

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摘要

Nanofluids because of their surface characteristics improve the oil production from reservoirs by enabling different enhanced recovery mechanisms such as wettability alteration, interfacial tension (IFT) reduction, oil viscosity reduction, formation and stabilization of colloidal systems and the decrease in the asphaltene precipitation. To the best of the authors' knowledge, the synthesis of a new nanocomposite has been studied in this paper for the first time. It consists of nanoparticles of both SiO2 and Fe3O4. Each nanoparticle has its individual surface property and has its distinct effect on the oil production of reservoirs. According to the previous studies, Fe3O4 has been used in the prevention or reduction of asphaltene precipitation and SiO2 has been considered for wettability alteration and/or reducing IFTs in enhanced oil recovery. According to the experimental results, the novel synthesized nanoparticles have increased the oil recovery by the synergistic effects of the formed particles markedly by activating the various mechanisms relative to the use of each of the nanoparticles in the micromodel individually. According to the results obtained for the use of this nanocomposite, understanding reservoir conditions plays an important role in the ultimate goal of enhancing oil recovery and the formation of stable emulsions plays an important role in oil recovery using this method.
机译:由于它们的表面特性因此通过诸如润湿性改变,界面张力(IFT)降低,胶体系统的油粘度降低,形成和稳定性等不同的增强的恢复机制,从储层中提高油生产,胶体系统的表面特征,改善了储层的石油生产。据作者所知,本文首次研究了本文的新纳米复合材料的合成。它由SiO2和Fe3O4的纳米颗粒组成。每个纳米粒子都有其个体表面性质,对油藏的石油生产具有不同的影响。根据先前的研究,Fe3O4已被用于预防或减少沥青质沉淀,并且已经考虑了SiO2用于润湿性改变和/或减少IFTS提高的采油。根据实验结果,新颖的合成纳米颗粒通过在单独的微模型中的各种纳米粒子中的使用,通过激活各种机制来增加所形成的颗粒的协同效应增加了油回收。根据获得该纳米复合材料的结果,了解储层条件在提高油回收的最终目标中起重要作用,并且稳定乳液的形成在利用这种方法起在储存中起重要作用。

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