

Catalytic Hydrogenation of Furfural
https://doi.org/10.18412/1816-0387-2018-2-6-10
Abstract
Palladium catalysts for selective hydrogenation of furfural to furfuryl alcohol were studied. Properties of the catalytic systems prepared using different supports (alumina and hypercrosslinked polystyrene) and different precursors (palladium chloride and palladium chloride bisacetonitrile) were compared. The natures of the support and precursor were demonstrated to affect considerably the catalyst morphology and activity to the selective hydrogenation of furfural. The furfural conversion in the presence of the most effective catalyst 3% Pd/MN270 (PdCl2) reached more than 95 % at the selectivity for furfuryl alcohol as high as 94 %.
About the Authors
K. E. Sal’nikovaRussian Federation
V. S. Isaev
Russian Federation
V. G. Matveeva
Russian Federation
A. I. Sidorov
Russian Federation
A. V. Bykov
Russian Federation
I. P. Shkilyeva
Russian Federation
E. M. Sul’man
Russian Federation
References
1. Halilu A., Ali T.H., Atta A.Y., Sudarsanam P., Bhargava S.K., Abd Hamid S.B. // Energy Fuels 2016. 30. Р. 2216—2226.
2. Hu L., Zhao G., Hao W., Tang X., Sun Y., Lin L., Liu S. // RSC Adv. 2012. 2. Р. 11184—11206.
3. Climent M.J., Corma A., Iborra S. // Green Chem. 2014. 16. Р. 516—547.
4. Paulsen A.D., Mettler M.S., Dauenhauer P.J. // Energy Fuels 2013. 27. Р. 2126—2134.
5. Taylor M.J., Durndell L.J., Isaacs M.A., Parlett C.M., Wilson A.K., Lee A.F., Kyriakou G. // Appl. Catal. B 2016. 180. Р. 580—585.
6. Nagaraja B.M., Kumar V.S., Shasikala V., Padmasri A.H., Sreedhar B., Raju B. D., Rao K.R. // Catal. Commun. 2003. 4. Р. 287—293.
7. Wu J., Shen Y., Liu C., Wang H., Geng C., Zhang Z. // Catal. Commun. 2005. 6. Р. 633—637.
8. Nagaraja B.M., Padmasri A.H., Raju B.D., Rama Rao K.S. // J. Mol. Catal. A 2007. 265. Р. 90—97.
9. Huang W., Li H., Zhu B., Feng Y., Wang S., Zhang S. // Ultrason. Sonochem. 2007. 14. Р. 67—74.
10. Chen X., Zhang L., Zhang B., Guo X., Mu X. // Sci. Rep. 2016. 6. P. 28558.
11. Li F., Cao B., Ma R., Liang J., Song H., Song H. // Can. J. Chem. Eng. 2016. 94. Р. 1368-1374.
12. Maligal-Ganesh R.V., Xiao C., Goh T.W., Wang L.-L., Gustafson J., Pei Y.Q., Zhiyuan, Johnson D.D., Zhang S., Tao F., Huang W. // ACS Catal. 2016. 6. Р. 1754-1763.
13. Aldosari O.F., Iqbal S., Miedziak P.J., Brett G.L., Jones D.R., Liu X., Edwards J.K., Morgan D.J., Knight D.K., Hutchings G.J. // Catal. Sci. Technol. 2016. 6. Р. 234-242;
14. Merlo A.B., Vetere V., Ramallo-Lopez J.M., Requejo F.G., Casella M.L. // React. Kinet. Mech. Catal. 2011. 104. Р. 467.
15. Yu W., Tang Y., Mo L., Chen P., Lou H., Zheng X. // Catal. Commun. 2011. 13. Р. 35.
16. Fulajtárova K., Soták T., Hronec M., Vávra I., Dobroˇcka E., Omastová M. // Appl. Catal. A 2015. 502. Р. 78.
17. Lee J., Burt S.P., Carrero C.A., Alba-Rubio A.C. et al. // J. Catal. 2015. 330. Р. 19—27.
18. Tsvetkova I.B., Matveeva V.G., Doluda V.Y., Bykov A.V., Sidorov A.I., Schennikov S.V., Sulman M.G., Valetsky P.M., Stein B.D., Chun-Hsing Chen, Sulman E.M., Bronstein L.M. // J. Mater. Chem. 2012. 22. Р. 6441-6448.
19. Sulman E., Sulman M., Tyamina I., Doluda V., Nikoshvili L., Lyubimova N., Sidorov A., Matveeva V. // Chem. Eng. Technol. 2015. 38. 4. Р. 683—689.
20. Khromova S.A., Bykova M.V., Bulavchenko O.A., Ermakov D.Y., Saraev A.A., Kaichev V.V., Venderbosch R.H., Yakovlev V.A. // Top. Catal. 2016. 59. Р. 1413-1423.
21. Mironenko R.M. Belskaya O.B., Gulyaeva T.I., Nizovskii A.I., Kalinkin A.V., Bukhtiyarov V.I., Lavrenov A.V., Likholobov V.A. // Catalysis Today 2015. 249. Р. 145-152.
Review
For citations:
Sal’nikova K.E., Isaev V.S., Matveeva V.G., Sidorov A.I., Bykov A.V., Shkilyeva I.P., Sul’man E.M. Catalytic Hydrogenation of Furfural. Kataliz v promyshlennosti. 2018;18(2):6-10. (In Russ.) https://doi.org/10.18412/1816-0387-2018-2-6-10