Diffusion limitation causes decreased enantioselectivity of esterification of 2-butanol by immobilized Candida antarctica lipase B

Journal Article (2001)
Author(s)

M. J.J. Litjens (TU Delft - OLD BT/Cell Systems Engineering)

K. Q. Le

A. J.J. Straathof (TU Delft - Applied Sciences)

J. A. Jongejan (TU Delft - BT/Enzymology)

J. J. Heijnen (TU Delft - OLD BT/Cell Systems Engineering)

Research Group
BT/Bioprocess Engineering
DOI related publication
https://doi.org/10.3109/10242420109103513 Final published version
More Info
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Publication Year
2001
Language
English
Research Group
BT/Bioprocess Engineering
Issue number
1
Volume number
19
Pages (from-to)
1-19
Downloads counter
35

Abstract

Diffusion limitation in immobilized enzyme particles may decrease the performance of kinetic resolution processes. In this paper a standard reaction plus diffusion model approach, based on homogeneous enzyme distribution, is used to verify experimentally the influence of the particle diameter on the observed enantioselectivity. This is done for a commercial preparation of immobilized Candida antarctica lipase B in the kinetic resolution of racemic 2-butanol by esterification with vinyl butyrate in heptane. For immobilized enzyme particles with particle diameters ranging from 355-710 μm the apparent enantiomeric ratio is constant at Eapp = 2.5, while for ground particles with a particle diameter of 1 μm the intrinsic enantiomeric ratio is E = 4.4. This clear example of the influence of diffusion limitation on the observed enantioselectivity can not be described quantitatively in a straightforward way, because the enzyme seems to be present as a layer in the carrier particles.