Immobilized lipase-catalysed synthesis of cinnamyl laurate in non-aqueous media
β Scribed by Ganapati D. Yadav; Shrikant B. Dhoot
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 532 KB
- Volume
- 57
- Category
- Article
- ISSN
- 1381-1177
No coin nor oath required. For personal study only.
β¦ Synopsis
Esters of cinnamyl alcohol find many applications in food, cosmetic and pharmaceutical industries as flavor and fragrance compounds. The current work focuses on the synthesis of cinnamyl laurate from cinnamyl alcohol and lauric acid, including screening of various immobilized lipases and optimization of reaction conditions such as catalyst loading, speed of agitation, mole ratio and temperature. Among different lipases screened such as Novozym 435, Lipozyme RM IM and Lipozyme TL IM, Novozym 435 was found to be the best catalyst with 60% conversion in 2 h at 30 β’ C for equimolar quantities of the reactants using 0.33% (w/v) of catalyst and toluene as solvent. An ordered bi-bi mechanism with dead-end complex of lauric acid was found to represent the kinetic data.
π SIMILAR VOLUMES
The ability of seven lipase preparations to catalyse methyl ester synthesis in aqueous media was compared and the synthesis reaction (esterification or alcoholysis) determined. Three behaviours were observed: three enz)qnes catalysed ester synthesis by esterification of free fatty acids and one enzy
## Abstract Many industrially important reactions use immobilized enzymes in nonβaqueous, organic systems, particularly for the production of chiral compounds such as pharmaceutical precursors. The addition of a spacer molecule (βtetherβ) between a supporting surface and enzyme often substantially