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PMID: 42398551 Published · aheadofprint English

Wood-biomimetic microfluidic enzymatic reactor for intensified continuous-flow synthesis of flavor esters.

Bioresource technology ·Vol. 460 ·2026-07-07

Gao Y, Zhang Y, Zivkovic V, Liu T, Quek SY, Yang Q, Xu Y, Zheng M

Abstract

Natural woods are abundant and renewable biomass resources, the inherent microchannels and micropores make woods the ideal microfluidic device. In this study, a wood-biomimetic microfluidic enzymatic reactor (CALB@BW-C8) was proposed by hydrophobically functionalizing balsa wood column (BW) using octyltrimethoxysilane (C8) and immobilizing lipases for the continuous-flow catalytic synthesis of flavor esters. Results indicate that C8 modification improved the water contact angles of BW from 52.0° to 122.7°, thus providing the hydrophobic microenvironment to enhance enzyme activity and stability. When two CALB@BW-C8 reactors were connected in series, the continuous-flow conversion of hexyl hexanoate reached 91% under solvent-free conditions. Besides, the superior thermal stability, long-term reusability, broad applicability, mechanical strength and porous stability of CALB@BW-C8 also highlighted its industrial potential. Finally, computational fluid dynamics (CFD) simulations revealed that liquid substrates could migrated through intervessel pits to achieve cross-channel mass transfer, while the vessel perforation plates further enhanced local turbulence to promote the sufficient substrate-enzyme contacted. Hence, this paper innovatively combined the natural microfluidic wood with enzymatic catalysis, to achieve the continuous and sustainable production of flavor esters.

Keywords
CFD Simulation Enzymatic catalysis Hydrophobic modification Microfluidic reactor Wood column
Article Info
Journal
Bioresource technology
Abbr.
Bioresour Technol
ISSN
1873-2976
Published
2026-07-07
Language
English
Country/Region
England
NLM ID
9889523
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