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催化学报  2015 

Cr-freeCo-Cu/SBA-15catalystsforhydrogenationofbiomass-derivedα-,β-unsaturatedaldehydetoalcohol

DOI: 10.1016/S1872-2067(15)60870-1, PP. 933-942

Keywords: Mesoporouscatalyst,Cobalt,Copper,SBA-15,Furfural,Furfurylalcohol,Hydrogenation

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Abstract:

?Cr-freebi-metallicSBA-15-supportedCo-Cucatalystswereexaminedintheconversionofbiomass-derivedα-,β-unsaturatedaldehyde(furfural)tovalue-addedchemicalfurfurylalcohol(FOL).Co-Cu/SBA-15catalystswithafixedCuloadingof10wt%andvaryingColoadings(2.5,5,and10wt%)werepreparedbytheimpregnationmethod.ThecatalystswerecharacterizedbyX-raydiffraction,N2sorption,H2temperature-programmedreduction,scanningelectronmicroscopy,energy-dispersiveX-rayspectroscopy,high-resolutiontransmissionelectronmicroscopy,COchemisorption,andinductivelycoupledplasmamassspectrometry.Theinfluenceofdifferentreactionparameterssuchastemperature,pressure,catalystdosage,andfurfuralconcentrationonthecatalystperformancewasevaluated.Relativetocatalystssupportedonamorphoussilica,thecurrentSBA-15-supportedCo-Cucatalystsdisplayedhigherperformance,attainingafurfuralconversionof99%andfurfurylalcoholselectivityof80%.Thecatalyticreactionswereconductedina100-mLautoclaveat170℃and2MPaH2pressurefor4h.

References

[1]  Corma A, Iborra S, Velty A. Chem Rev, 2007, 107: 2411
[2]  Nanda S, Mohanty P, Pant K K, Naik S, Kozinski J A, Dalai A K. Bioenergy Res, 2013, 6: 663
[3]  Butler E, Devlin G, Meier D, McDonnell K. Renew Sustain Energy Rev, 2011, 15: 4171
[4]  Chiaramonti D, Oasmaa A, Solantausta Y. Renew Sustain Energy Rev, 2007, 11: 1056
[5]  Yan K, Wu G S, Lafleur T, Jarvis C. Renew Sustain Energy Rev, 2014, 38: 663
[6]  Yang W, Sen A. ChemSusChem, 2011, 4: 349
[7]  Sharma R V, Das U, Sammynaiken R, Dalai A K. Appl Catal A, 2013, 454: 127
[8]  Borts M S, Gilchenok N D, Ignatev V M, Gurevich G S. J Appl Chem USSR, 1986, 59: 114
[9]  Rao R, Dandekar A, Baker R T K, Vannice M A. J Catal, 1997, 171: 406
[10]  Vaidya P D, Mahajani V V. Ind Eng Chem Res, 2003, 42: 3881
[11]  Rojas H, Martines J J, Reyes P. Dyna, 2010, 163: 151
[12]  Sitthisa S, Sooknoi T, Ma Y, Balbuena P B, Resasco D E. J Catal, 2011, 277: 1
[13]  Villaverde M M, Bertero N M, Garetto T F, Marchi A J. Catal Today, 2013, 213: 87
[14]  Yan K, Chen A C. Energy, 2013, 58: 357
[15]  Seo G, Chon H. J Catal, 1981, 67: 424
[16]  Lee J Y, Lee D W, Lee K Y, Wang Y. Catal Today, 2009, 146: 260
[17]  Yan K, Chen A C. Fuel, 2014, 115: 101
[18]  Burnette L W, Johns I B, Holdren R F, Hixon R M. Ind Eng Chem, 1948, 40: 502
[19]  Dong F, Zhu Y L, Zheng H Y, Zhu Y F, Li X Q, Li Y W. J Mol Catal A, 2015, 398: 140
[20]  Liu B J, Lu L H, Wang B C, Cai T X, Katsuyoshi I. Appl Catal A, 1998, 171: 117
[21]  Thomas D D. US Patent 4146460. 1979
[22]  Erzhanova M S, Beisekov T B. SU Patent 450585. 1974
[23]  Beisekov T B, Masaeva S A, Kuatbekov A M, Pilipenko S V, Utebaeva A. Khim Promst, 1992: 507
[24]  Pljusnin L D, Beisekov T, Jerzhanova M S, Daurenbekov B D. Khim Promst, 1988: 672
[25]  Sitthisa S, Pham T, Prasomsri T, Sookni T, Mallinson R G, Re-sasco D E. J Catal, 2011, 280: 17
[26]  Sitthisa S, An W, Resasco D E. J Catal, 2011, 284: 90
[27]  Merlo A B, Vetere V, Ruggera J F, Casella M L. Catal Commun, 2009, 10: 1665
[28]  Reddy B M, Reddy G K, Rao K N, Khan A, Ganesh I. J Mol Catal A, 2007, 265: 276
[29]  Wu J, Shen Y M, Liu C H, Wang H B, Geng C J, Zhang Z X. Catal Commum, 2005, 6: 633
[30]  Li H, Chai W M, Luo H S, Li H X. Chin J Chem, 2006, 24: 1704
[31]  Chen X F, Li H X, Luo H S, Qiao M H. Appl Catal A, 2002, 233: 13
[32]  Wei S Q, Cui H Y, Wang J H, Zhuo S P, Yi W M, Wang L H, Li Z H. Particuology, 2011, 9: 69
[33]  Ramachandran P A, Chaudhari R V. Three-Phase Catalytic Reac-tors. New York: Gordon and Breach, 1983. 427
[34]  Klimova T, Reyes J, Gutierrez O, Lizama L. Appl Catal A, 2008, 335: 159
[35]  Soni K, Mouli K C, Dalai A K, Adjaye J. Catal Lett, 2010, 136: 116
[36]  Dhar G M, Kumaran G M, Kumar M, Rawat K S, Sharma L D, Raju B D, Rama Rao K S. Catal Today, 2005, 99: 309
[37]  Carrero A, Calles J A, Vizcaíno A J. Appl Catal A, 2007, 327: 82
[38]  Zhu Y Y, Wang S R, Zhu L J, Ge X L, Li X B, Luo Z Y. Catal Lett, 2010, 135: 275
[39]  Marchi A J, Di Cosimo J I, Apesteguia C R. Catal Today, 1992, 15: 383
[40]  Cesar D V, Perez C A, Salim V M M, Schmal M. Appl Catal A, 1999, 176: 205
[41]  Iglesia E, Soled S L, Baumgartner J E, Reyes S C. J Catal, 1995, 153: 108
[42]  Tien-Thao N, Zahedi-Niaki M H, Alamdari H, Kaliaguine S. J Catal, 2007, 245: 348
[43]  Xu X D, Mausbeck D, Scholten J J F. Catal Today, 1991, 10: 429
[44]  Baker J E, Burch R, Hibble S J, Loader P K. Appl Catal, 1990, 65: 281
[45]  Mohanty P, Pant K K, Parikh J, Sharma D K. Fuel Process Technol, 2011, 92: 600
[46]  An K, Somorjai G A. Catal Lett, 2015, 145: 233
[47]  Nagaraja B M, Siva Kumar V, Shasikala V, Padmasri A H, Sreedhar B, Raju B D, Rama Rao K S. Catal Commun, 2003, 4: 287
[48]  Zhao D Y, Feng J L, Huo Q S, Melosh N, Fredrickson G H, Chmelka B F, Stucky G D. Science, 1998, 279: 548
[49]  Vargas-Hernandez D, Rubio-Caballero J M, Santamar?a-Gonzalez J, Moreno-Tost R, Merida-Robles J M, Perez-Cruz M A, Jimenez- Lopez A, Hernandez-Huesca A, Maireles-Torres. J Mol Catal A, 2014, 383-384: 106
[50]  Yan K, Lafleur T, Jarvis C, Wu G S. J Clean Prod, 2014, 72: 230
[51]  Liu D X, Zemlyanov D, Wu T P, Lobo-Lapidus R J, Dumesic J A, Miller J T, Marshall C L. J Catal, 2013, 299: 336
[52]  Vetere V, Merlo A B, Ruggera J F, Casella M L. J Braz Chem Soc, 2010, 21: 914
[53]  Sitthisa S, Resasco D E. Catal Lett, 2011, 141: 784

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