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酸性离子液体从变压器油中萃取二苄基二硫醚

Extraction of Dibenzyl Disulfide from Transformer Oils by Acidic Ionic Liquid.

作者信息

Zhang Lili, Peng Pei, Pan Qian, Wan Fang, Zhang Huaxin

机构信息

Hubei Key Laboratory of Drug Synthesis and Optimization, Jingchu University of Technology, Jingmen 448000, China.

出版信息

Molecules. 2024 May 19;29(10):2395. doi: 10.3390/molecules29102395.

Abstract

In recent years, dibenzyl disulfide (DBDS) in transformer oils has caused many transformer failures around the world, and its removal has attracted more attention. In this work, nine imidazolium-based ionic liquids (ILs) were applied as effective, green desulfurization extractants for DBDS-containing transformer oil for the first time. The results show that the desulfurization ability of the ILs for DBDS followed the order of [BMIM]FeCl > [BMIM]N(CN) > [BMIM]SCN > BMIMPO > [BMIM]MeSO > [BMIM]NTf > [BMIM]OTf > [BMIM]PF > [BMIM]BF. Especially, [BMIM]FeCl ionic liquid had excellent removal efficiency for DBDS, with its S partition coefficient (S) being up to 2642, which was much higher than the other eight imidazolium-based ILs. Moreover, the extractive performance of [BMIM]FeCl increased with an increasing molar ratio of FeCl to [BMIM]Cl, which was attributed to its Lewis acidity and fluidity. [BMIM]FeCl ionic liquid could also avail in the desulfurization of diphenyl sulfide (DPS) from model oils. The experimental results demonstrate that π-π action, π-complexation, and Lewis acid-base interaction played important roles in the desulfurization process. Finally, the ([BMIM]FeCl) ionic liquid could be recycled five times without a significant decrease in extractive ability.

摘要

近年来,变压器油中的二苄基二硫化物(DBDS)在全球范围内引发了多起变压器故障,其去除受到了更多关注。在本研究中,首次将九种咪唑基离子液体(ILs)用作含DBDS变压器油的高效绿色脱硫萃取剂。结果表明,ILs对DBDS的脱硫能力顺序为:[BMIM]FeCl > [BMIM]N(CN) > [BMIM]SCN > BMIMPO > [BMIM]MeSO > [BMIM]NTf > [BMIM]OTf > [BMIM]PF > [BMIM]BF。特别是,[BMIM]FeCl离子液体对DBDS具有优异的去除效率,其硫分配系数(S)高达2642,远高于其他八种咪唑基ILs。此外,[BMIM]FeCl的萃取性能随FeCl与[BMIM]Cl摩尔比的增加而提高,这归因于其路易斯酸性和流动性。[BMIM]FeCl离子液体也可用于从模拟油中脱除二苯硫醚(DPS)。实验结果表明,π-π作用、π-络合和路易斯酸碱相互作用在脱硫过程中起重要作用。最后,([BMIM]FeCl)离子液体可循环使用五次,萃取能力无显著下降。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4248/11124192/cb8010e03c5a/molecules-29-02395-g001.jpg

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