超低浓度两亲性二硫化钼纳米片提高采收率研究及现场应用

Ming Qu, Tuo Liang, J. Hou, Wei-Peng Wu, Yuchen Wen, Lixiao Xiao
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引用次数: 0

摘要

近年来,球形纳米颗粒由于其优异的性能,在世界范围内得到了广泛的研究,以提高石油采收率。然而,纳米片在提高采收率方面的研究缺乏。在这项工作中,我们通过简单的水热法合成了两亲性二硫化钼纳米片。由于二硫化钼纳米片表面存在活性位点,十八烷基胺(ODA)分子被接枝到二硫化钼纳米片表面。合成的两亲性二硫化钼纳米片(ODA-MoS2纳米片)的宽度约为67 nm,厚度约为1.4 nm。研究并讨论了超低浓度ODA-MoS2纳米片对固体表面动态润湿性变化和乳液稳定性的影响。此外,还通过岩心驱油实验揭示了超低浓度ODA-MoS2纳米片的吸附规律和驱油效果。实验结果表明,经50 mg/L ODA-MoS2纳米片处理后,油湿固体表面(接触角为130°)可在120 h内转化为中性湿固体表面(接触角为90°)。此外,添加ODA-MoS2纳米片后,可以通过吸附在油水界面上形成粒径为2µm的微尺度乳液。给出了单片ODA-MoS2纳米片从油水界面到体相的解吸能。当ODA-MoS2纳米片的浓度为50 mg/L时,乳液最稳定。岩心驱油结果表明,ODA-MoS2纳米片在多孔介质中的最终残留量小于11%,采收率最高可达16.26%左右。最后,对超低浓度(50 mg/L) ODA-MoS2纳米流体在大庆油田的应用进行了总结和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultralow Concentration of Amphiphilic Molybdenum Disulfide Nanosheets for Enhanced Oil Recovery-Research and Field Application
Recently, spherical nanoparticles have been studied to enhance oil recovery (EOR) worldwide due to their remarkable properties. However, there is a lack of studies of nanosheets on EOR. In this work, we synthesize the amphiphilic molybdenum disulfide nanosheets through a straightforward hydrothermal method. The octadecyl amine (ODA) molecules were grafted onto the surfaces of molybdenum disulfide nanosheets due to the presence of active sites over the surfaces of MoS2 nanosheets. The synthesized amphiphilic molybdenum disulfide nanosheets (ODA-MoS2 nanosheets) are approximate 67 nm in width and 1.4 nm in thickness. The effects of ultralow concentration ODA-MoS2 nanosheets on the dynamic wettability change of solid surfaces and emulsion stability were also studied and discussed. Besides, the core flooding experiments were also conducted to reveal the adsorption rules and the oil displacement effects of ultralow concentration ODA-MoS2 nanosheets. Experimental results indicate that the oil-wet solid surface (a contact angle of 130°) can transform into the neutral-wet solid surface (a contact angle of 90°) within 120 hrs after 50 mg/L ODA-MoS2 nanosheets treatment. In addition, micro-scale emulsions in size of 2 µm can be formed after the addition of ODA-MoS2 nanosheets by adsorbing onto the oil-water interfaces. The desorption energy of a single ODA-MoS2 nanosheet from the oil-water interface to the bulk phase is proposed. When the concentration of ODA-MoS2 nanosheets is 50 mg/L, the emulsions are the most stable. Core flooding results demonstrate that the ultimate residue of ODA-MoS2 nanosheets in porous media is less than 11%, and the highest increased oil recovery of around 16.26% is achieved. Finally, the production performance of ultralow concentration of ODA-MoS2 nanofluid (50 mg/L) in the application of Daqing Oilfield is summarized and discussed.
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