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Influence of substrate partition coefficient on the performance of lipase catalyzed synthesis of citronellyl acetate by alcoholysis
- Source :
- Brazilian Journal of Chemical Engineering, Volume: 17, Issue: 4-7, Pages: 859-866, Published: DEC 2000, Scopus-Elsevier, Brazilian Journal of Chemical Engineering, Vol 17, Iss 4-7, Pp 859-866 (2000), Brazilian Journal of Chemical Engineering v.17 n.4-7 2000, Brazilian Journal of Chemical Engineering, Associação Brasileira de Engenharia Química (ABEQ), instacron:ABEQ
- Publication Year :
- 2000
- Publisher :
- Brazilian Society of Chemical Engineering, 2000.
-
Abstract
- The enzymatic synthesis of selected low molecular weight esters such as acetate esters by direct esterification using acetic acid as acyl donor usually display low yields. The acetic acid changes the polarity of the reaction medium, which in this turn modifies the partitioning of water between the solid phase (enzyme preparation) and the liquid phase (substrate), resulting in its accumulation on the enzyme solid phase. This may reduce the enzyme´s local pH. Therefore, the enzyme active site is modified and the reaction became nearly impossible. Our previous work showed that there is a negative relationship between enzyme activity and substrate partition coefficient (Ps); that is, the higher the substrate partition coefficient the lower the amount of product formed. This work investigated the feasibility of minimizing this inhibition by replacing the esterification reaction for alcoholysis reaction using several acetate esters. This approach enhanced the reaction yields to 46%, which is about 3 times higher than that one obtained in the esterification route.
- Subjects :
- biology
Chemistry
General Chemical Engineering
alcoholysis
Substrate (chemistry)
Active site
lcsh:TP155-156
citronellyl acetate
partition coefficient
Enzyme assay
Catalysis
Partition coefficient
Acetic acid
chemistry.chemical_compound
Phase (matter)
biology.protein
lipase
Organic chemistry
Lipase
lcsh:Chemical engineering
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Brazilian Journal of Chemical Engineering, Volume: 17, Issue: 4-7, Pages: 859-866, Published: DEC 2000, Scopus-Elsevier, Brazilian Journal of Chemical Engineering, Vol 17, Iss 4-7, Pp 859-866 (2000), Brazilian Journal of Chemical Engineering v.17 n.4-7 2000, Brazilian Journal of Chemical Engineering, Associação Brasileira de Engenharia Química (ABEQ), instacron:ABEQ
- Accession number :
- edsair.doi.dedup.....8ff91b66496b4370fec3d83fe5381fa5