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EXTRACTION

Desulfurization of Diesel Fuel by Extraction with Lewis-Acidic Ionic Liquid

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Pages 971-982 | Received 17 Jan 2008, Accepted 19 May 2008, Published online: 03 Mar 2009

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Aleksandra Sander, Marko Rogošić, Borna Ferčec & Jelena Parlov Vuković. (2017) Liquid–liquid equilibrium for the systems hydrocarbon–thiophene or pyridine–1-hexyl-3,5-dimethylpyridinium bis(trifluoromethylsulfonyl)imide. Separation Science and Technology 52:16, pages 2557-2572.
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Hongshuai Gao, Shaojuan Zeng, Hongyan He, Haifeng Dong, Yi Nie, Xiangping Zhang & Suojiang Zhang. (2014) Deep Desulfurization of Gasoline Fuel using FeCl3-Containing Lewis-Acidic Ionic Liquids. Separation Science and Technology 49:8, pages 1208-1214.
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Xiaochun Chen, Ge Liu, Shan Yuan, Charles Asumana, Wenbo Wang & Guangren Yu. (2012) Extractive Desulfurization of Fuel Oils with Thiazolium-Based Ionic Liquids. Separation Science and Technology 47:6, pages 819-826.
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Hongshuai Gao, Chen Guo, Jianmin Xing & Huizhou Liu. (2012) Deep Desulfurization of Diesel Oil with Extraction Using Pyridinium-Based Ionic Liquids. Separation Science and Technology 47:2, pages 325-330.
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Alireza Hosseini, Ali Khoshsima, Mazaher Sabzi & Ata Rostam. (2022) Toward Application of Ionic Liquids to Desulfurization of Fuels: A Review. Energy & Fuels 36:8, pages 4119-4152.
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Crossref
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Elizeo Lissner, Wladmir F. de Souza, Bauer Ferrera & Jairton Dupont. (2009) Oxidative Desulfurization of Fuels with Task-Specific Ionic Liquids. ChemSusChem 2:10, pages 962-964.
Crossref
Esther Kuhlmann , Marco Haumann, Andreas Jess, Andreas Seeberger & Peter Wasserscheid. (2009) Ionic Liquids in Refinery Desulfurization: Comparison between Biphasic and Supported Ionic Liquid Phase Suspension Processes. ChemSusChem 2:10, pages 969-977.
Crossref
Laura M. SprungerSai S. AchiWilliam E. AcreeJr.Jr. & Michael H. Abraham. (2009) Linear Free Energy Relationship Correlations for Enthalpies of Solvation of Organic Solutes into Room-Temperature Ionic Liquids Based on the Abraham Model with Ion-Specific Equation Coefficients. Industrial & Engineering Chemistry Research 48:18, pages 8704-8709.
Crossref
James F. Wishart. (2009) Energy applications of ionic liquids. Energy & Environmental Science 2:9, pages 956.
Crossref

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