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催化学报  2015 

Selectiveoxidationofsulfursandoxidationdesulfurizationofmodeloilby12-tungstophosphoricacidoncobalt-ferritenanoparticlesasmagneticallyrecoverablecatalyst

DOI: 10.1016/S1872-2067(15)60862-2, PP. 1342-1349

Keywords: Phosphotungsticacid,Cobalt,Ferrite,Oxidativedesulfurization,Dibenzothiophene,Magneticcatalyst

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Abstract:

?Silica-coatedCoFe2O4nanoparticleswerepreparedandusedasasupportfortheimmobilizationof12-tungstophosphoricacid,toproduceanewmagneticallyseparablecatalyst.ThiscatalystwascharacterizedusingX-raydiffraction,wavelength-dispersiveX-rayspectroscopy,Fourier-transforminfraredspectroscopy,scanningelectronmicroscopy,transmissionelectronmicroscopy,laserparticlesizeanalysis,andvibratingsamplemagnetometry.Thecatalystshowedhighactivityintheselectiveoxidationofthioethersandthiophenestothecorrespondingsulfonesundermildconditions.Thecatalyticactivityofthenanocatalystintheoxidativedesulfurizationofmodeloilwasinvestigated.Theeffectofnitrogen-containingcompoundsonsulfurremovalfromthemodeloilwasalsoevaluated.Thecatalystshowedhighactivityintheoxidativedesulfurizationofdiesel.Thecatalystcanbereadilyisolatedfromtheoxidationsystemusinganexternalmagnetandnoobviouslossofactivitywasobservedwhenthecatalystwasreusedinfourconsecutiveruns.

References

[1]  Zhu W S, Huang W L, Li H M, Zhang M, Jiang W, Chen G Y, Han C R. Fuel Process Technol, 2011, 92: 1842
[2]  Rafiee E, Eavani S. J Mol Catal A, 2013, 380: 18
[3]  Rafiee E, Mirnezami F. J Mol Liq, 2014, 199: 156
[4]  Yan X M, Lei J H, Liu D, Wu Y C, Guo L P. J Chin Chem Soc, 2007, 54: 911
[5]  Kong L Y, Li G, Wang X S, Wu B. Energy Fuels, 2006, 20: 896
[6]  Yazu K, Furuya T, Miki K. J Jpn Pet Inst, 2003, 46: 379
[7]  Wang Y, Zhang J L, Wang X D, Ren J W, Zuo B J, Tang Y Q. Top Catal, 2005, 35: 35
[8]  Xiong J, Zhu W S, Ding W J, Yang L, Chao Y H, Li H P, Zhu F X, Li H M. Ind Eng Chem Res, 2014, 53: 19895
[9]  Xiong J, Zhu W S, Ding W J, Yang L, Zhang M, Jiang W, Zhao Z, Li H M. RSC Adv, 2015, 5: 16847
[10]  Zhang Z X, Zhao W, Ma B C, Ding Y. Catal Commun, 2010, 12: 318
[11]  Long Z Y, Yang C P, Zeng G M, Peng L Y, Dai C H, He H J. Fuel, 2014, 130: 19
[12]  Juli?o D, Gomes A C, Pillinger M, Cunha-Silva L, de Castro B, Gon?alves I S, Balula S S. Fuel Process Technol, 2015, 131: 78
[13]  Zhao N, Li S W, Wang J Y, Zhang R L, Gao R M, Zhao J S, Wang J L. J Solid State Chem, 2015, 225: 347
[14]  Wu N J, Li B S, Liu Z X, Han C Y. Catal Commun, 2014, 46: 156
[15]  Frenanez I, Khiar N. Chem Rev, 2003, 103: 3651
[16]  Wan M W, Yen T F. Appl Catal A, 2007, 319: 237
[17]  Etemadi O, Yen T F. J Colloid Interface Sci, 2007, 313: 18
[18]  Jiang Z X, Lü H Y, Zhang Y N, Li C. Chin J Catal (蒋宗轩, 吕宏缨, 张永娜, 李灿. 催化学报), 2011, 32: 707
[19]  Zhang Y N, Wang L, Zhang Y L, Jiang Z X, Li C. Chin J Catal (张永娜, 王璐, 张玉良, 蒋宗轩, 李灿. 催化学报), 2011, 32: 235
[20]  Jiang C Y, Wang J J, Wang S T, Guan H Y, Wang X H, Huo M X. Appl Catal B, 2011, 106: 343
[21]  Komintarachat C, Trakarnpruk W. Ind Eng Chem Res, 2006, 45: 1853
[22]  Yazu K, Yamamoto Y, Furuya T, Miki K, Ukegawa K. Energy Fuels, 2001, 15: 1535
[23]  Tang N F, Zhao X P, Jiang Z X, Li C. Chin J Catal (唐南方, 赵小平, 蒋宗轩, 李灿. 催化学报), 2014, 35: 1433
[24]  Wishart J F. Energ Environ Sci, 2009, 2: 956
[25]  Wilfred C D, Kiat C F, Man Z, Bustam M A, Mutalib M I M, Phak C Z. Fuel Process Technol, 2012, 93: 85
[26]  Li H M, Zhu W S, Wang Y, Zhang J T, Lu J D, Yan Y S. Green Chem, 2009, 11: 810
[27]  Imtiaz A, Waqas A, Muhammad I. Chin J Catal (催化学报), 2013, 34: 1839
[28]  Zhu W S, Zhang J T, Li H M, Chao Y H, Jiang W, Yin S, Liu H. RSC Adv, 2012, 2: 658
[29]  Lü H Y, Gao J B, Jiang Z X, Yang Y X, Song B, Li C. Chem Commun, 2007: 150
[30]  Song H Y, Li G, Wang X S, Xu Y J. Catal Today, 2010, 149: 127
[31]  Zhang M, Zhu W S, Xun S H, Li H M, Gu Q Q, Zhao Z, Wang Q. Chem Eng J, 2013, 220: 328
[32]  Ishihara A, Wang D H, Dumeignil F, Amano H, Qian E W H, Kabe T. Appl Catal A, 2005, 279: 279
[33]  Zhang J, Wang A J, Wang Y J, Wang H Y, Gui J Z. Chem Eng J, 2014, 245: 65
[34]  Xiong J, Zhu W S, Li H M, Xu Y H, Jiang W, Xun S H, Liu H, Zhao Z. AIChE J, 2013, 59: 4696
[35]  Li C, Jiang Z X, Gao J B, Yang Y X, Wang S J, Tian F P, Sun F X, Sun X P, Ying P L, Han C R. Chem Eur J, 2004, 10: 2277
[36]  Lü H Y, Ren W Z, Wang H Y, Wang Y, Chen W, Suo Z H. Appl Catal A, 2013, 453: 376
[37]  Lü H Y, Deng C L, Ren W Z, Yang X. Fuel Process Technol, 2014, 119: 87
[38]  Ma M, Zhang Y, Yu W, Shen H Y, Zhang H Q, Gu N. Colloids Surf A, 2003, 212: 219
[39]  Haw C Y, Chia C H, Zakaria S, Mohamed F, Radiman S, Teh C H, Khiew P S, Chiu W S, Huang N M. Ceram Int, 2011, 37: 451
[40]  Morais P C, Santos R L, Pimenta A C M, Azevedo R B, Lima E C D. Thin Solid Films, 2006, 515: 266
[41]  Rakjumar T, Rao G R. J Chem Sci, 2008, 120: 587
[42]  Sofia L T A, Krishnan A, Sankar M, Kala Raj N K, Manikandan P, Rajamohanan P R, Ajithkumar T G. J Phys Chem C, 2009, 113: 21114
[43]  Rafiee E, Eavani S, Rashidzadeh S, Joshaghani M. Inorg Chim Acta, 2009, 362: 3555
[44]  Gyergyek S, Makovec D, Kodre A, Arcon I, Jagodic M, Drofenik M. J Nanopart Res, 2010, 12: 1263
[45]  Martinez B, Obradors X, Balcells L, Rouanet A, Monty C. Phys Rev Lett, 1998, 80: 181
[46]  Sreedha B, Radhika P, Neelima B, Hebalkar N, Mishra A K. Catal Commun, 2008, 10: 39
[47]  Sheikhshoaie I, Rezaeifard A, Monadi N, Kaafi S. Polyhedron, 2009, 28: 733
[48]  Venkat Reddy C, Verkade J G. J Mol Catal A, 2007, 272: 233
[49]  Rafiee E, Baltork I M, Tangestaninejad S, Azad A, Moinee S. Z Naturforsch B, 2006, 61: 601
[50]  Zhang J, Wang A J, Li X, Ma X H. J Catal, 2011, 279: 269
[51]  Chotani G, Dodge T, Hsu A, Kumar M, LaDuca R, Trimbur D, Weyler W, Sanford K. Biochim Biophys Acta-Protein Struct Molec Enzym, 2000, 1543: 434
[52]  Thomsen A B, Laturnus F. J Hazard Mater, 2001, 81: 193
[53]  Zhao W, Zhang Y S, Ma B C, Ding Y, Qiu W Y. Catal Commun, 2010, 11: 527

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