Martins_2013_Biotechnol.Prog_29_1416

Reference

Title : Optimized butyl butyrate synthesis catalyzed by Thermomyces lanuginosus lipase - Martins_2013_Biotechnol.Prog_29_1416
Author(s) : Martins AB , Friedrich JL , Rodrigues RC , Garcia-Galan C , Fernandez-Lafuente R , Ayub MA
Ref : Biotechnol Prog , 29 :1416 , 2013
Abstract :

Butyl butyrate is an ester present in pineapple flavor, which is very important for the food and beverages industries. In this work, the optimization of the reaction of butyl butyrate synthesis catalyzed by the immobilized lipase Lipozyme TL-IM was performed. n-Hexane was selected as the most appropriate solvent. Other reaction parameters such as temperature, substrate molar ratio, biocatalyst content and added water, and their responses measured as yield, were evaluated using a fractional factorial design, followed by a central composite design (CCD) and response surface methodology. In the fractional design 2(4-1) , the four variables were tested and temperature and biocatalyst content were statistically significant and then used for optimization on CCD. The optimal conditions for butyl butyrate synthesis were found to be 48 degC; substrate molar ratio 3:1 (butanol:butyric acid); biocatalyst content of 40% of acid mass. Under these conditions, over 90% of yield was obtained in 2 h. Enzyme reuse was tested by washing the biocatalyst with n-hexane or by direct reuse. The direct reuse produced a rapid decrease on enzyme activity, while washing with n-hexane allowed reusing the enzyme for five reactions cycles keeping approximately 85% of its activity.

PubMedSearch : Martins_2013_Biotechnol.Prog_29_1416
PubMedID: 23946156
Gene_locus related to this paper: humla-1lipa

Related information

Gene_locus humla-1lipa

Citations formats

Martins AB, Friedrich JL, Rodrigues RC, Garcia-Galan C, Fernandez-Lafuente R, Ayub MA (2013)
Optimized butyl butyrate synthesis catalyzed by Thermomyces lanuginosus lipase
Biotechnol Prog 29 :1416

Martins AB, Friedrich JL, Rodrigues RC, Garcia-Galan C, Fernandez-Lafuente R, Ayub MA (2013)
Biotechnol Prog 29 :1416