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新型硅量子点的开发及其在提高部分水解聚丙烯酰胺强化采油中的潜力

Development of Novel Silicon Quantum Dots and Their Potential in Improving the Enhanced Oil Recovery of HPAM.

作者信息

Zhao Mingwei, Li Ying, Dai Caili, Chen Yingpeng, Yang Ziteng, Liu Kaiwen, Ma Zhenfeng

机构信息

National Key Laboratory of Deep Oil and Gas Development, China University of Petroleum (East China), Qingdao 266580, P. R. China.

Shandong Key Laboratory of Oilfield Chemistry, School of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, China.

出版信息

Langmuir. 2024 Feb 13;40(6):3181-3189. doi: 10.1021/acs.langmuir.3c03620. Epub 2024 Feb 1.

Abstract

Hydrolyzed polyacrylamide (HPAM) is commonly used in polymer flooding, however, it is prone to viscosity reduction at high temperatures and high salinities, weakening its ability to improve oil recovery. In this work, sulfonated modified silicon quantum dots (S-SiQDs) were synthesized and then added to HPAM to study the improvement of rheological properties and enhanced oil recovery performance of HPAM at high temperatures and salinities. It is found that the S-SiQDs with a concentration of only 0.1 wt % can significantly increase the viscosity of HPAM from 28.5 to 39.6 mPa·s at 60 °C and 10,000 mg/L NaCl. Meanwhile, the HPAM/S-SiQDs hybrid solution always possessed higher viscosity and viscoelastic moduli than HPAM, attributed to the hydrogen bonding between HPAM and S-SiQDs. Notably, HPAM/S-SiQDs still maintained elastic behavior at harsh conditions, indicating that they formed a strong network structure. Through oil displacement experiments, it was found that the oil recovery of HPAM/S-SiQDs was higher (28.3%), while that of HPAM was only 17.2%. Thereafter, the utilization sequence of oil during the displacement process was studied with nuclear magnetic resonance experiments. Ultimately, the oil displacement mechanism of HPAM/S-SiQDs was deeply analyzed, including viscosity thickening and wetting reversal.

摘要

水解聚丙烯酰胺(HPAM)常用于聚合物驱油,但它在高温高盐环境下容易发生黏度降低的现象,从而削弱其提高原油采收率的能力。在本研究中,合成了磺化改性硅量子点(S-SiQDs),并将其添加到HPAM中,以研究其对HPAM在高温高盐条件下流变性能的改善以及提高原油采收率的性能。研究发现,在60℃和10000mg/L NaCl条件下,仅添加0.1wt%的S-SiQDs就能显著提高HPAM的黏度,使其从28.5mPa·s提高到39.6mPa·s。同时,HPAM/S-SiQDs混合溶液的黏度和黏弹性模量始终高于HPAM,这归因于HPAM与S-SiQDs之间的氢键作用。值得注意的是,HPAM/S-SiQDs在苛刻条件下仍保持弹性行为,表明它们形成了强网络结构。通过驱油实验发现,HPAM/S-SiQDs的原油采收率更高(28.3%),而HPAM的原油采收率仅为17.2%。此后,利用核磁共振实验研究了驱替过程中原油的动用顺序。最终,深入分析了HPAM/S-SiQDs的驱油机理,包括黏度增稠和润湿性反转。

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