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Production of C-14 Levulinate Ester from Glucose Fermentation Liquors Catalyzed by Acidic Ionic Liquids in a Solvent-Free Self-Biphasic System
Umeå University, Faculty of Science and Technology, Department of Chemistry.ORCID iD: 0000-0003-4097-3504
Umeå University, Faculty of Science and Technology, Department of Chemistry. Industrial Chemistry & Reaction Engineering, Department of Chemical Engineering, Johan Gadolin Process Chemistry Centre, Åbo Akademi University, Åbo-Turku, Finland.
2020 (English)In: ACS Omega, E-ISSN 2470-1343, Vol. 5, no 10, p. 4828-4835Article in journal (Refereed) Published
Abstract [en]

Herein, we present the C-14 levulinate ester of 2,3-butanediol as the product of sugar fermentation liquors. The designed Brønsted acidic ionic liquid (BAIL) catalysts enable self-induced phase separation with ester products, and the role of anions has been investigated. Esterification reactions were carried out by 2,3-butanediol (2,3-BDO) and levulinic acid in solvent-free media and low temperatures (60–105 °C). For comparison, sulfuric acid, amberlite IR-120, and sulfonic acid-functionalized pyridinium ionic liquids with different anions were utilized as a catalyst upon esterification reaction. The diester product, namely, butane-2,3-diyl bis(4-oxopentanoate), was formed with a good yield (85%) and selectivity (85%) after complete conversion of 2,3-BDO in 24 h at 80 °C. The low yield (8%) of the monoester was observed. The monoester and diester were separated by a liquid–liquid extraction method. The ester products were characterized by various instrumental techniques such as 1H and 13C NMR, GC–FID, LC–MS, and FT-IR spectroscopy. The Hammett acidity functions of BAILs were determined from UV–vis spectroscopy. The catalyst was successfully recycled and reused in the processes. The spent BAILs were reused in six consecutive cycles with only a ∼7% diminished diester yield and selectivity. The produced levulinate ester will be useful as biofuel additives, solvents, plasticizers, and other applications.

Place, publisher, year, edition, pages
American Chemical Society (ACS), 2020. Vol. 5, no 10, p. 4828-4835
National Category
Chemical Engineering Organic Chemistry Polymer Technologies Other Chemical Engineering
Identifiers
URN: urn:nbn:se:umu:diva-168744DOI: 10.1021/acsomega.9b03517ISI: 000520853400014Scopus ID: 2-s2.0-85081219571OAI: oai:DiVA.org:umu-168744DiVA, id: diva2:1413012
Projects
Bio4Energy
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Bio4EnergyAvailable from: 2020-03-09 Created: 2020-03-09 Last updated: 2025-02-18Bibliographically approved

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Mukesh, ChandrakantMikkola, Jyri-Pekka

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