Journal of Environmental Protection

Journal of Environmental Protection

ISSN Print: 2152-2197
ISSN Online: 2152-2219
www.scirp.org/journal/jep
E-mail: jep@scirp.org
"Ionic Liquid Assisted Extraction of Nitrogen and Sulphur-Containing Air Pollutants from Model Oil and Regeneration of the Spent Ionic Liquid"
written by Ikenna Anugwom, Päivi Mäki-Arvela, Tapio Salmi, Jyri-Pekka Mikkola,
published by Journal of Environmental Protection, Vol.2 No.6, 2011
has been cited by the following article(s):
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[5] How to select ionic liquids as extracting agents systematically: a special case study for extractive denitrification processes
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[6] In-situ catalytic upgrading of heavy oil using oil-soluble transition metal-based catalysts
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[11] Extracción de azufre de la gasolina comercializada en el Ecuador con tetrafluoroborato de 1-Butil-3-Metilimidazolio [BMIM][BF4] como solvente de extracción.
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[12] Intensification of Water on the Extraction of Pyridine from n-Hexane using Ionic Liquid
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[13] Betaine+(Glycerol or Ethylene Glycol or Propylene Glycol) Deep Eutectic Solvents for Extractive Purification of Gasoline
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[14] Efficient Extraction of Neutral Heterocyclic Nitrogen Compounds from Coal Tar via Ionic Liquids and Its Mechanism Analysis
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[15] Extraction of benzothiazole and thiophene from their mixtures with n-heptane using tetrahexylammonium bromide-based deep eutectic solvents as extractive …
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[17] An Efficient Extraction Method for Separation of Carbazole and Derivatives from Coal Tar Derived Anthracene Oil by Using Ionic Liquids
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[18] Modelling of Liquid–liquid Equilibria in Quasi-seven-component Systems with Deep Eutectic Solvents as Extraction Media
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[19] Modeliranje ravnoteže kapljevina-kapljevina u kvazi-sedmerokomponentnim sustavima s niskotemperaturnim eutektičkim otapalima kao ekstrakcijskim sredstvima
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[20] Modeling of liquid-liquid equilibria in quasi-seven-component systems with deep eutectic solvents as extraction media
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[21] Experimental Study on Homogeneous Catalytic Upgrading of Heavy Oil.
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[22] Experimental study on homogeneous catalytic upgrading of heavy oil
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[23] Liquid–liquid equilibrium for the systems hydrocarbon–thiophene or pyridine–1-hexyl-3, 5-dimethylpyridinium bis (trifluoromethylsulfonyl) imide
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[29] Liquid–liquid equilibria in the ternary and multicomponent systems involving hydrocarbons, thiophene or pyridine and ionic liquid (1-benzyl-3-metylimidazolium bis (trifluorometylsulfonyl) imide)
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[30] Desulphurization of Fuel Oils Using Ionic Liquids
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[31] Liquid–liquid equilibria in the ternary and multicomponent systems involving hydrocarbons, thiophene or pyridine and ionic liquid (1-benzyl-3-metylimidazolium bis …
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[38] Denitrogenation of diesel using ionic liquid characterization
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[39] Denitrogenation of Diesel Using Ionic Liquid:/b Characterization
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[40] Experimental investigation on the effectiveness of 1-butyl-3-methylimidazolium perchlorate ionic liquid as a reducing agent for heavy oil upgrading
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[41] Absorption of Hydrophobic Volatile Organic Compounds in Ionic Liquids and Their Biodegradation in Multiphase Systems
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[42] Application of 1-pentyl-3-methylimidazolium bis (trifluoromethylsulfonyl) imide for desulfurization, denitrification and dearomatization of FCC gasoline
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[44] A Quantum Chemical Study on Interaction Energy between Halogen Free Ionic Liquid and Aromatic Nitrogen Compounds
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[47] Extraction of S-and N-compounds from the mixture of hydrocarbons by ionic liquids as selective solvents
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[48] Liquid–Liquid Equilibrium Studies on the Removal of Thiophene and Pyridine from Pentane Using Imidazolium-Based Ionic Liquids
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[49] Aromatic sulfur‐nitrogen extraction using ionic liquids: Experiments and predictions using an a priori model
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