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Received February 4, 2015
Accepted May 22, 2015
- This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/bync/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
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Deep extractive desulfurization of oil over 12-Molibdophosphoric acid encapsulated in metal-organic frameworks
1Faculty of Chemistry, Razi University, Kermanshah 67149, Iran 2Institute of Nano Science and Nano Technology, Razi University, Kermanshah 67149, Iran
Korean Journal of Chemical Engineering, January 2016, 33(1), 132-139(8), 10.1007/s11814-015-0109-8
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Abstract
A desulfurization process for model oil and real oil was investigated based on the chemical oxidation of mixed sulfur containing compounds in the presence of nitrogen compounds (indole and quinoline) using hydrogen peroxide as oxidizing agent and dodecamolibdophosphoric acid (H3PMo12O40) encapsulated in a kind of metal-organic framework (HKUST-1) as PMo@HKUST-1. The effect of isopropanol, ethanol and acetonitrile as extractive solvent and 1-ring (toluene, xylene and mesitylene) and 2-ring (naphthalene) aromatic hydrocarbons in desulfurization of model oil was studied. The desulfurization of sulfur-containing compounds was accelerated in the presence of aromatic hydrocarbons. In fact, a higher desulfurization efficiency of the heterogeneous catalyst could be achieved with system containing a polar solvent in contact with an aromatic hydrocarbon. Quinoline had no effect on oxidative desulfurization (ODS) reaction, whereas indole had a slightly negative effect. Presence of aromatic compounds had slightly positive effect on ODS reaction.
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Yu F, Wang R, Molecules, 18, 13691 (2013)
Ribeiro S, Granadeiro CM, Silva P, Paz FAA, de Biani FF, Cunha-Silva L, Balula SS, Catal. Sci. Technol., 3, 2404 (2013)
Huang D, Wang YJ, Yang LM, Luo GS, Ind. Eng. Chem. Res., 45(6), 1880 (2006)
Ishihara A, Wang DH, Dumeignil F, Amano H, Qian EWH, Kabe T, Appl. Catal. A: Gen., 279(1-2), 279 (2005)
Prasad VVDN, Jeong KE, Chae HJ, Kim CU, Jeong SY, Catal. Commun., 9, 1966 (2008)
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Lee J, Farha OK, Roberts J, Scheidt KA, Nguyen ST, Hupp JT, Chem. Soc. Rev., 38, 1450 (2009)
Liu HY, Wu H, Ma JF, Liu YY, Yang J, Ma JC, J. Chem. Soc.-Dalton Trans., 40, 602 (2011)
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Hulea V, Fajula F, Bousquet J, J. Catal., 198(2), 179 (2001)
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Bernal HG, Caero LC, Gutierrez-Alejandre A, Catal. Today, 142, 227 (2009)
Long ZY, Yang CP, Zeng GM, Peng LY, Dai CH, He HJ, Fuel, 130, 19 (2014)
Jiang CY, Wang JJ, Wang ST, Guan HY, Wang XH, Huo MX, Appl. Catal. B: Environ., 106(3-4), 343 (2011)
Garcia-Gutierrez JL, Fuentes GA, Hernandez-Teran ME, Garcia P, Murrieta-Guevara F, Jimenez-Cruz F, Appl. Catal. A: Gen., 334(1-2), 366 (2008)
Luo GQ, Kang LH, Zhu MY, Dai B, Fuel Process. Technol., 118, 20 (2014)