Thermocatalytic synthesis of 2-butanol from biomass-derived levulinic acid using carbon-doped titania-supported ruthenium

Abstract

The thermocatalytic synthesis of 2-butanol (2-BuOH) from biomass-derived levulinic acid (LA) using carbon-doped titanium dioxide-supported ruthenium (denoted as Ru@C–TiO2) was systematically investigated. The Ru@C–TiO2 catalysts were synthesised via three different methods as follows: (i) a one-pot (op) approach from a solution of salt precursors at 150 °C for 24 h; (ii) coprecipitation–hydrothermal (cop) procedure from ruthenium solution and @C–TiO2 at 150 °C for 24 h; and (iii) physical mixing (pm) of the precursors without solvent, followed by reduction with H2 at 400 °C for 2 h. The catalysts were characterised by means of XRD, ATR-IR and Raman spectroscopies, TEM, N2-adsorption, H2-TPR, NH3-TPD, pyridine adsorption, and UV-vis DRS techniques. XRD patterns revealed that (op)Ru@C–TiO2 and (pm)Ru@C–TiO2 comprised rutile phase TiO2, whereas (cop)Ru@C–TiO2 consisted of anatase phase TiO2. The highest yields of 2-BuOH (87%) and 2-pentanol (2-PeOH) (11%) were achieved using the (op)Ru@C–TiO2 (Ru = ∼5.0 wt%; C = 2.0 wt% to TiO2) catalyst at 200 °C and at an initial H2 pressure of 30 bar after 180 min. Furthermore, the (op)Ru@C–TiO2 catalyst could be used for at least four reaction runs while maintaining the conversion of LA without any notable decrease in the yield of 2-BuOH.

Graphical abstract: Thermocatalytic synthesis of 2-butanol from biomass-derived levulinic acid using carbon-doped titania-supported ruthenium

Supplementary files

Article information

Article type
Paper
Submitted
26 Dec 2024
Accepted
14 Jan 2025
First published
17 Jan 2025

Sustainable Energy Fuels, 2025, Advance Article

Thermocatalytic synthesis of 2-butanol from biomass-derived levulinic acid using carbon-doped titania-supported ruthenium

A. S. Azzahra, Rodiansono, I. F. Nata, K. C. Sembiring, I. B. Adilina and A. Afandi, Sustainable Energy Fuels, 2025, Advance Article , DOI: 10.1039/D4SE01815J

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