Long-chain polyoxyethylene ether-modified nanomaterials and their oil recovery mechanism for low-permeability reservoirs

纳米流体 渗吸 提高采收率 润湿 表面张力 纳米颗粒 化学工程 纳米材料 材料科学 纳米流体学 接触角 纳米技术 复合材料 油页岩 粒子(生态学) 流离失所(心理学) 蒸发 十二烷基硫酸钠 致密油 纳米尺度 压裂液 润滑 纳米- 石油工程
作者
Wenwei Wu,Fangnian Niu,Xuegui Yang,Wei Li,Cong Zhao,Yaoguo Wang,Wanli Kang,Бауыржан Сарсенбекулы,Liguo Zhong,Guoqing Zhang,Zhen Tao
出处
期刊:Physics of Fluids [American Institute of Physics]
卷期号:38 (5) 被引量:1
标识
DOI:10.1063/5.0326575
摘要

To address the challenges posed by tight reservoirs with low porosity, low permeability, and poor spontaneous imbibition, a novel nanofluid for enhanced oil recovery was developed. The nanofluid was formulated using laboratory-synthesized silica nanoparticles that were hydrophobically modified with a long-chain polyoxyethylene ether to obtain hydrophobically modified silica nanoparticles (PSNPs). The PSNPs were dispersed in de-ionized water with sodium dodecyl sulfate to formulate the nanofluid (PSNF). Due to its ultrafine particle size relative to conventional oil displacement agents, PSNF can effectively penetrate nanoscale pore throats and promote displacement efficiency. PSNF enables fast migration to the oil–water–solid interfaces and effectively promotes oil film detachment from rock surfaces. The nanofluid achieves an interfacial tension reaching the order of 10−3 mN/m against crude oil and reduces the contact angle from 95° to 20.4°, indicating excellent interfacial activity and effective wettability alteration. At a concentration of 0.3%, the nanofluid exhibits a spontaneous imbibition height of 24 mm and an imbibition efficiency of 31.48%. The superior imbibition performance of the PSNF nanofluid was further corroborated by nuclear magnetic resonance core analysis. These results demonstrate the strong potential of PSNF for enhancing oil recovery in low-permeability tight reservoirs.

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