One-pot Heterogeneous Biocatalysis under Thermal Decay for Fructose Production from Lactose using Co-Immobilized Enzymes: Modeling and Simulation
Keywords: catalyst deactivation, Glucose isomerase, multi-enzyme reactions, immobilized enzyme bioreactor, internal diffusional restrictions
Abstract
Multi-enzyme reaction systems have become an interesting option to avoid transformation and purification steps in productive reactor-based systems; when carried out in a single vessel, they are termed one-pot systems. This novel work aims to model and simulate the behavior of a one-pot heterogeneous catalysis system in a batch-stirred bioreactor and in a continuous stirred bioreactor with co-immobilized enzymes to determine the compromise operation temperature that maximizes the volumetric productivity, considering thermal decay of the biocatalyst. The production of fructose from lactose is considered a case study, using co-immobilized (Formula presented.) -galactosidase ((Formula presented.) -gal) and glucose-isomerase (GI) in a spherical particle. A diffusion and reaction mathematical model was used to calculate the effectiveness factor for every reaction species considering the thermal decay of both enzymes. Simulations in both batch and continuous operation were done at temperatures ranging from 40 to 60 °C, for initial enzyme activity load ratios ranging from 0.1 to 0.9 IU
Más información
| Título según WOS: | One-pot Heterogeneous Biocatalysis under Thermal Decay for Fructose Production from Lactose using Co-Immobilized Enzymes: Modeling and Simulation |
| Título según SCOPUS: | One-pot Heterogeneous Biocatalysis under Thermal Decay for Fructose Production from Lactose using Co-Immobilized Enzymes: Modeling and Simulation |
| Título de la Revista: | ChemCatChem |
| Volumen: | 16 |
| Número: | 6 |
| Editorial: | John Wiley and Sons Inc. |
| Fecha de publicación: | 2024 |
| Idioma: | English |
| DOI: |
10.1002/cctc.202301240 |
| Notas: | ISI, SCOPUS |