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苯并咪唑鎓纳米双子离子液体与传统表面活性剂在化学强化采油中的有效协同作用

Effective Synergistic Action of Benzimidazolium Nano Gemini Ionic Liquid and Conventional Surfactant for Chemical Enhanced Oil Recovery.

作者信息

Saien Javad, Shokri Behnaz, Kharazi Mona

机构信息

Faculty of Chemistry and Petroleum Sciences, Bu-Ali Sina University, Hamedan 6517838695, Iran.

出版信息

ACS Omega. 2024 May 10;9(20):22336-22344. doi: 10.1021/acsomega.4c01768. eCollection 2024 May 21.

Abstract

Blends of newly developed Gemini surface-active ionic liquids (GSAILs) and conventional surfactants offer significant enhancements to the interfacial properties between crude oil and water, providing economic benefits in chemically enhanced oil recovery. In this study, the mixtures of a benzimidazolium cationic GSAIL, [Cbenzim-C-benzimC][Br], and sodium dodecyl benzenesulfonate (SDBS) were successfully utilized for improving crude oil-water interfacial properties. The research revealed synergistic effects of up to 99.6% in reducing interfacial tension (IFT), achieving a low IFT value of 0.04 mN m corresponding to an optimal GSAIL mole fraction of 0.2 for the mixture of surfactants. Additionally, significant synergies of 53.4 and 74% were observed in oil-water emulsification and in surface wettability when using a GSAIL mole fraction of 0.2. These results showcase the importance of the dominant interaction between the opposite-charged surfactants. The Frumkin isotherm and the Rosen model were employed for the theoretical study of adsorption behavior of individual surfactants and their mixture at the interface, demonstrating reasonable parameter variations. The overall findings emphasize the potential of utilizing these unique blends to enhance oil recovery processes through tailored interfacial properties.

摘要

新开发的双子表面活性离子液体(GSAILs)与传统表面活性剂的混合物能显著增强原油与水之间的界面性质,在化学强化采油中带来经济效益。在本研究中,苯并咪唑鎓阳离子型GSAIL [Cbenzim-C-benzimC][Br] 与十二烷基苯磺酸钠(SDBS)的混合物成功用于改善原油-水界面性质。研究表明,在降低界面张力(IFT)方面协同效应高达99.6%,对于表面活性剂混合物,当GSAIL摩尔分数为0.2时,可实现0.04 mN/m的低IFT值。此外,当GSAIL摩尔分数为0.2时,在油水乳化和表面润湿性方面分别观察到53.4%和74%的显著协同效应。这些结果表明了带相反电荷表面活性剂之间主要相互作用的重要性。采用弗鲁姆金等温线和罗森模型对单一表面活性剂及其混合物在界面处的吸附行为进行理论研究,结果显示参数变化合理。总体研究结果强调了利用这些独特混合物通过定制界面性质来强化采油过程的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f5c/11112586/266939013f8f/ao4c01768_0001.jpg

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