Extractive Deep Desulfurization of Liquid Fuels Using Lewis-Based Ionic Liquids
Author(s) -
Swapnil Dharaskar,
Kailas L. Wasewar,
Mahesh N. Varma,
Diwakar Z. Shende
Publication year - 2013
Publication title -
journal of energy
Language(s) - English
Resource type - Journals
eISSN - 2356-735X
pISSN - 2314-615X
DOI - 10.1155/2013/581723
Subject(s) - ionic liquid , dibenzothiophene , flue gas desulfurization , extraction (chemistry) , hydrodesulfurization , materials science , liquid fuel , chemical engineering , inorganic chemistry , organic chemistry , chemistry , sulfur , catalysis , metallurgy , combustion , engineering
A new class of green solvents, known as ionic liquids (ILs), has recently been the subject of intensive research on the extractive desulfurization of liquid fuels because of the limitation of traditional hydrodesulfurization method. In present work, eleven Lewis acid ionic liquids were synthesized and employed as promising extractants for deep desulfurization of the liquid fuel containing dibenzothiophene (DBT) to test the desulfurization efficiency. [Bmim]Cl/FeCl3 was the most promising ionic liquid and performed the best among studied ionic liquids under the same operating conditions. It can remove dibenzothiophene from the model liquid fuel in the single-stage extraction process with the maximum desulfurization efficiency of 75.6%. It was also found that [Bmim]Cl/FeCl3 may be reused without regeneration with considerable extraction efficiency of 47.3%. Huge saving on energy can be achieved if we make use of this ionic liquids behavior in process design, instead of regenerating ionic liquids after every time of extraction
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