Issue 95, 2016, Issue in Progress

Selective hydrogenation of furfural on Ru/Al-MIL-53: a comparative study on the effect of aromatic and aliphatic organic linkers

Abstract

Two Al-MIL-53 materials containing aromatic and aliphatic linkers were prepared by using 1,4-benzenedicarboxylic acid (BDC) and adipic acid (ADP) as organic precursors, respectively. The resulting materials were characterized by BET, XRD, IR and TG. The characterization results indicated that the framework containing an aromatic ring (Al-MIL-53-BDC) shows a much higher surface area (761 m2 g−1) than the analogue with an aliphatic linker (Al-MIL-53-ADP, 4 m2 g−1). Al-MIL-53-BDC showed a larger adsorption capacity towards organic substrates such as furfural due to its higher surface area. Both materials can support Ru nanoparticles efficiently via a simple deposition–reduction method. XPS and TEM results suggested that Ru particles are predominantly oxidized with a particle size in the range of 1–4 nm. TPR results indicated that the oxidized Ru nanoparticles on Al-MIL-53-BDC can be reduced at around room temperature, forming metallic Ru nanoparticles which serve as the active sites for the catalytic hydrogenation of furfural under mild conditions. Full conversion of furfural and 100% selectivity to furfuryl alcohol can be achieved at 20 °C and 0.5 MPa H2 on Ru/Al-MIL-53-BDC.

Graphical abstract: Selective hydrogenation of furfural on Ru/Al-MIL-53: a comparative study on the effect of aromatic and aliphatic organic linkers

Supplementary files

Article information

Article type
Paper
Submitted
30 Aug 2016
Accepted
20 Sep 2016
First published
21 Sep 2016

RSC Adv., 2016,6, 92299-92304

Selective hydrogenation of furfural on Ru/Al-MIL-53: a comparative study on the effect of aromatic and aliphatic organic linkers

J. Yang, J. Ma, Q. Yuan, P. Zhang and Y. Guan, RSC Adv., 2016, 6, 92299 DOI: 10.1039/C6RA21701J

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