Continuous flow hydrogenation of methyl and ethyl levulinate: an alternative route to γ -valerolactone production

Heterogeneous continuous transformation of methyl levulinate (ML) and ethyl levulinate (EL) to -valerolactone (GVL), as a promising C -platform molecule was studied at 100°C. It was proved that the H-Cube continuous hydrogenation system equipped with 5% Ru/C CatCart is suitable for the reduction of...

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Veröffentlicht in:Royal Society open science 2019-05, Vol.6 (5), p.182233-182233
Hauptverfasser: Tukacs, József M, Sylvester, Áron, Kmecz, Ildikó, Jones, Richard V, Óvári, Mihály, Mika, László T
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Sprache:eng
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Zusammenfassung:Heterogeneous continuous transformation of methyl levulinate (ML) and ethyl levulinate (EL) to -valerolactone (GVL), as a promising C -platform molecule was studied at 100°C. It was proved that the H-Cube continuous hydrogenation system equipped with 5% Ru/C CatCart is suitable for the reduction of both levulinate esters. While excellent conversion rates (greater than 99.9%) of ML and EL could be achieved in water and corresponding alcohols, the selectivities of GVL were primarily affected by the solvent used. In water, 100% conversion and 50% selectivity that represent 0.45 mol g h productivity towards GVL, were obtained under 100 bar of total system pressure. The application of alcohols as a solvent, which maintained high conversion rates up to 1 ml min flow rate, resulted in lower productivities (less than 0.2 mol g h ) of GVL. Therefore, from a synthesis point of view, the corresponding 4-hydroxyvalerate esters could be obtained even at a higher reaction rate. The addition of sulfonated triphenylphosphine ligand (TPPTS) allowed reduction of the system pressure and resulted in the higher selectivity towards GVL.
ISSN:2054-5703
2054-5703
DOI:10.1098/rsos.182233