Recent progress on extractive desulfurization of fuel oils through reactions based on ionic liquids as solvents and catalysts

被引:0
作者
Wu P. [1 ]
Xun S. [2 ]
Jiang W. [3 ]
Li H. [3 ]
Zhu W. [1 ]
机构
[1] School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang
[2] School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang
[3] Institution for Energy Research, Jiangsu University, Zhenjiang
来源
Huagong Xuebao/CIESC Journal | 2021年 / 72卷 / 01期
关键词
Catalysis; Desulfurization; Fuel oils; Ionic liquid; Processing intensification; Reactive extraction;
D O I
10.11949/0438-1157.20201131
中图分类号
学科分类号
摘要
With the continuous development of society, the consumption of gasoline and diesel has been increasing year by year. The development of non-hydrodesulfurization methods with excellent removal performance of aromatic sulfides under mild conditions is of great significance to the upgrading of Chinese gasoline and diesel standards. Extractive desulfurization can remove aromatic sulfides in fuel oils at room temperature and normal pressure. Moreover, selective desulfurization can be gained by the design of the extractant structures. This article reviews the current research progress of ionic liquid reaction-type extraction desulfurization method. The principle and mechanism of ionic liquid reaction-type extraction desulfurization method are discussed in detail. Moreover, this review focuses on the effects of ionic liquid, oxidant type, and process intensification separation and recovery of ionic liquids, etc. in ionic liquid reaction-type extraction desulfurization method. This article also analyzes the bottleneck restricting the extensive industrial application of reaction-type extraction desulfurization method. © 2021, Editorial Board of CIESC Journal. All right reserved.
引用
收藏
页码:276 / 291
页数:15
相关论文
共 94 条
[1]  
Miao G, Dong L, Ren X L, Et al., An overview on adsorptive desulfurization of fuels, Chem. Ind. Eng. Progress, 39, 6, pp. 2251-2261, (2020)
[2]  
Zhang W, Zhang H, Xiao J, Et al., Carbon nanotube catalysts for oxidative desulfurization of a model diesel fuel using molecular oxygen, Green Chem, 16, 1, pp. 211-220, (2014)
[3]  
Yang R T, Hernandez-Maldonado A J, Yang F H., Desulfurization of transportation fuels with zeolites under ambient conditions, Science, 301, 5629, pp. 79-81, (2003)
[4]  
Babich I V, Moulijn J A., Science and technology of novel processes for deep desulfurization of oil refinery streams: a review, Fuel, 82, 6, pp. 607-631, (2003)
[5]  
Ahmed I, Jhung S H., Adsorptive desulfurization and denitrogenation using metal-organic frameworks, J. Hazard. Mater, 301, pp. 259-276, (2016)
[6]  
Bosmann A, Datsevich L, Jess A, Et al., Deep desulfurization of diesel fuel by extraction with ionic liquids, Chem. Commun, 23, pp. 2494-2495, (2001)
[7]  
Wang Y X, Li D D, Cao Z B, Et al., Complex adsorption thiophene sulfide using room -temperature aluminum chloride-based ionic liquids, J. Petrol. Univ, 17, 4, pp. 54-57, (2004)
[8]  
Wang Y X, Li D D, Yuan Q J., study on complexing adsorption removal thiophene sulfide using room - temperature ionic liquids, Liaoning Chem. Ind, 33, 9, pp. 512-514, (2004)
[9]  
Zhang Z Y, Cao Z B, Zhao D Z, Et al., Study on FCC naphtha desulfurization with complexing extraction and room temperature ionic liquid, Petrol. Refinery Eng, 35, 5, pp. 35-38, (2005)
[10]  
Weng J, Wang C, Li H, Et al., Novel quaternary ammonium ionic liquids and their use as dual solvent-catalysts in the hydrolytic reaction, Green Chem, 8, 1, pp. 96-99, (2006)