Synthesis of -valerolactone by hydrogenation of biomass-derived Levulinic acid over Ru/C catalyst
Publication details: jul./ago. 2009Description: 6 p. ; 3853-3858 In: Energy & fuels 23Summary: Transcripción del resumen del autor. Ru/C catalyst was used in hydrogenation of levulinic acid to produce -valerolactone. The conversion rate and the selectivity of levulinic acid to -valerolactone with Ru/C as catalyst were higher than those with Pd/C, Raney nickel, and Urushibara nickel. The optimum preparation conditions of -valerolactone by hydrogenation of levulinic acid catalyzed by Ru/C were as follows: temperature at 130 °C, hydrogen pressure at 1.2 MPa, dosage of catalyst at 5.0% (based on the mass fraction of levulinic acid), the solvent being methanol, and a reaction time of 160 min. The conversion rate of levulinic acid to -valerolactone was found to be 92%, and the selectivity of -valerolactone was 99%. The surface structure variations of the fresh and used catalysts were characterized by XRD and XPS. Furthermore, the reaction pathway for the hydrogenation of levulinic acid was proposed.| Current library | Status | Barcode | |
|---|---|---|---|
| Biblioteca Alejandro Angel Bulgheroni | Not for loan | 200045915 |
Transcripción del resumen del autor. Ru/C catalyst was used in hydrogenation of levulinic acid to produce -valerolactone. The conversion rate and the selectivity of levulinic acid to -valerolactone with Ru/C as catalyst were higher than those with Pd/C, Raney nickel, and Urushibara nickel. The optimum preparation conditions of -valerolactone by hydrogenation of levulinic acid catalyzed by Ru/C were as follows: temperature at 130 °C, hydrogen pressure at 1.2 MPa, dosage of catalyst at 5.0% (based on the mass fraction of levulinic acid), the solvent being methanol, and a reaction time of 160 min. The conversion rate of levulinic acid to -valerolactone was found to be 92%, and the selectivity of -valerolactone was 99%. The surface structure variations of the fresh and used catalysts were characterized by XRD and XPS. Furthermore, the reaction pathway for the hydrogenation of levulinic acid was proposed.
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