Towards understanding the hydrodeoxygenation pathways of furfural-acetone aldol condensation products over supported Pt catalysts

Aiming at the valorisation of furfural-derived compounds, the hydrodeoxygenation of furfural-acetone condensation products has been studied using supported platinum catalysts. The influence of the catalytic properties of different supports, such as SiO 2 , Al 2 O 3 , TiO 2 , hydrotalcite (HTC), Beta...

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Veröffentlicht in:Catalysis science & technology 2016-01, Vol.6 (6), p.1829-1841
Hauptverfasser: Ramos, R, Tišler, Z, Kikhtyanin, O, Kubi ka, D
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Sprache:eng
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Zusammenfassung:Aiming at the valorisation of furfural-derived compounds, the hydrodeoxygenation of furfural-acetone condensation products has been studied using supported platinum catalysts. The influence of the catalytic properties of different supports, such as SiO 2 , Al 2 O 3 , TiO 2 , hydrotalcite (HTC), Beta zeolite, Al-SBA-15 and WO 3 -ZrO 2 , was evaluated in a batch reactor for 480 min at 200 °C and 50 bar of H 2 . The used feed consisted of a mixture of furfural-acetone adducts (C 8 -C 19 ), obtained in previous experiments using a continuous flow reactor and hydrotalcite as a catalyst. Except for Pt/SiO 2 , all catalysts showed high conversion of the reactants, especially due to the hydrogenation of all the aliphatic C&z.dbd;C bonds. However, the extent of further hydrogenation (furan C&z.dbd;C and ketone C&z.dbd;O bonds) was limited, particularly when HTC and Al 2 O 3 were used as supports. The higher accessibility of Pt/TiO 2 and the smaller Pt particle size shown by Pt/Al-SBA-15, Pt/WO 3 -ZrO 2 and Pt/Beta in comparison with the other catalysts led to an improvement in the hydrogenation of furanic and ketonic groups, likely due to lower adsorption constraints. The higher acid character of the latter group of catalysts promotes dehydration and ring opening steps, thus enhancing the selectivity towards linear alcohols. Likewise, a significant increase in the extent of aldol condensation reactions was also observed with these catalysts, yielding longer carbon chain compounds. Based on this study, a reaction scheme for the transformation of 4-(2-furyl)-3-buten-2-one (C 8 ) into octane has been proposed in order to establish a valuable correlation between the main conversion pathways and the catalytic properties of the employed heterogeneous catalyst, thus contributing to further development of efficient deoxygenation catalysts. Aiming at the valorisation of furfural-derived compounds, the hydrodeoxygenation of furfural-acetone condensation products has been studied using supported platinum catalysts.
ISSN:2044-4753
2044-4761
DOI:10.1039/c5cy01422k