Citation:
HUANG Xiao-ming, ZHANG Qing, WANG Tie-jun, MA Long-long, ZHANG Qi, ZHANG Xing-hua, YU Yu-xiao, ZUO Hua-liang, LIU Jian-guo, YANG Yong. Catalytic performance of Raney Ni in the hydrogenation of di-furfural-acetone for producing long-chain alkane precursors[J]. Journal of Fuel Chemistry and Technology,
;2013, 41(1): 79-84.
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The hydrogenation of di-furfural-acetone for producing long-chain alkane precursors was carried out over Raney Ni catalyst; the effects of reaction temperature, pressure and time on the product distribution were investigated. The results indicated that Raney Ni exhibits excellent catalytic performance at low temperature. The hydrogenation can be enhanced by increasing temperature and pressure; at 50℃, 2.5 MPa and after 2 h reaction, the di-furfural-acetone is completely converted with 80.8% of the selectivity to the saturated hydrogenated products. However, excessive high temperature may be harmful to the hydrogenation. It was found that the hydrogenation activity towards three double bonds in di-furfural-acetone follows the order of ethylenic bond > furan ring double bond > C=O. Various solvents (water, methanol, tetrahydrofuran and cyclohexane) are also different in their effects on the catalytic performance; Raney Ni exhibits much higher hydrogenation activity in methanol than in other solvents.
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Keywords:
- di-furfural-acetone,
- Raney Ni,
- hydrogenation,
- long-chain alkane
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[1]
[1] HUBER G W, CHHEDA J N, BARRETT C J, DUMESIC J A. Production of liquid alkanes by aqueous-phase processing of biomass-derived carbohydrates[J]. Science, 2005, 308(5727): 1446-1450.
-
[2]
[2] ALIEV Z G, ATOVMYAN L O, MUIDINOV M R, VARLAMOV G D, MADALIEV S K. Thermal polymerization of difurfurylideneacetone-X-ray structural and calorimetric studies[J]. Bull Acad Sci USSR Div Chem Sci, 1991, 40(3): 525-529.
-
[3]
[3] HUBER G W, DUMESIC J A. An overview of aqueous-phase catalytic processes for production of hydrogen and alkanes in a biorefinery [J]. Catal Today, 2006, 111(1/2): 119-132.
-
[4]
[4] XING R, SUBRAHMANYAM A V, OLCAY H, QI W, WALSUM G P V, PENDSE H, HUBER G W. Production of jet and diesel fuel range alkanes from waste hemicellulose-derived aqueous solutions[J]. Green Chem, 2010, 12(11): 1933-1946.
-
[5]
[5] CHHEDA J N, HUBER G W, DUMESIC J A. Liquid-phase catalytic processing of biomass-derived oxygenated hydrocarbons to fuels and chemicals[J]. Angew Chim Int Ed, 2007, 46(38): 7164-7183.
-
[6]
[6] CHHEDA J N, DUMESIC J A. An overview of dehydration, aldol-condensation and hydrogenation processes for production of liquid alkanes from biomass-derived carbohydrates[J]. Catal Today, 2007, 123(1/4): 59-70.
-
[7]
[7] XU W, LIU X, REN J, ZHANG P, WANG Y, GUO Y, GUO Y, LU G. A novel mesoporous Pd/cobalt aluminate bifunctional catalyst for aldol condensation and following hydrogenation[J]. Catal Commun, 2010, 11(8): 721-726.
-
[8]
[8] ZAPATA P A, FARIA J, RUIZ M P, RESASCO D E. Condensation/hydrogenation of biomass-derived oxygenates in water/oil emulsions stabilized by nanohybrid catalysts[J]. Top Catal, 2012, 55(1/2), 38-52.
-
[9]
[9] PETRÓ J, BÓTA A, LÁSZLÓ K, BEYER H, KÁLMÁN E,DÓDONY I. A new alumina-supported, not pyrophoric Raney-type Ni-catalyst[J]. Appl Catal A, 2000, 190(1/2):73-86.
-
[10]
[10] RAJADHYAKSHA R A, KARWA S L. Solvent effects in catalytic-hydrogenation[J]. Chem Eng Sci, 1986, 41(7): 1765-1770.
-
[11]
[11] 赵会吉, 白锐, 刘晨光. 新型固定床 Raney催化剂的制备进展[J]. 现代化工, 2004, 24(11):15-23. ( ZHAO Hui-ji, BAI Rui, LIU Chen-guang. Advances in preparation of novel fixed-bed Raney catalysts[J]. Modern Chemical Industry, 2004, 24(11):15-23.
-
[1]
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