The Promotion Effect of Ionic Liquids on Polymer-Driven Recovered Water by Microwave Treatment

N. Sun, Ding Wang, Qing Quan, Lisha Shen, Huina Sun, Ruiyu Su
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引用次数: 1

Abstract

In view of the difficulties in breaking emulsions and removing oil from polymer-produced water, this study systematically analyzes the promotion effect of anion type, cation type, and concentration of ionic liquid on polymer-driven water produced by microwave treatment. First, when the microwave power is 400 W and the radiation time is 40 seconds, the oil removal rate is only 34.95%. Second, when the anion of the ionic liquid is Br−, the oil/water interfacial tension (IFT) reaches the lowest value. During microwave radiation, the ionic liquid adsorbed on the oil/water interface converts more electromagnetic energy to heat energy owing to dipole polarization and interfacial polarization. In addition, bromine salts have the lowest absolute zeta potential; thus, the electroneutralization effect is the largest. Third, as the length of the cationic alkyl chain of the ionic liquid increases, its synergistic effect with the microwaves first decreases and then increases. Finally, during microwave irradiation, as the concentration of 1-hexadecyl-3-methylimidazole bromide salt increases, the oil removal rate first increases rapidly and then decreases slightly. When the concentration of 1-hexadecyl-3-methylimidazole bromide is 1 mmol/L, the oil removal rate reaches the highest value of 90.31%.
离子液体对微波处理聚合物驱动回收水的促进作用
针对聚合物驱水破乳除油困难的问题,本研究系统分析了阴离子型、阳离子型、离子液体浓度对微波处理聚合物驱水的促进作用。首先,当微波功率为400w,辐射时间为40秒时,除油率仅为34.95%。其次,当离子液体阴离子为Br−时,油水界面张力(IFT)达到最低值。在微波辐射过程中,吸附在油水界面上的离子液体由于偶极极化和界面极化,将更多的电磁能转化为热能。此外,溴盐的zeta电位绝对值最低;因此,电中和效应最大。第三,随着离子液体阳离子烷基链长度的增加,其与微波的协同作用先减小后增大。最后,在微波辐照过程中,随着1-十六烷基-3-甲基咪唑溴盐浓度的增加,除油率先快速上升后略有下降。当1-十六烷基-3-甲基咪唑溴浓度为1 mmol/L时,除油率最高,为90.31%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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