Presentation Information
[P02-189]Scalable Chemoenzymatic Iodination of Waste-Derived
Phenolic Acids Using Pyranose 2-Oxidase for In Situ H2O2
Generation
○Pangrum Punthong1 (1. Vidyasirimedhi Institute of Science and Technology (VISTEC) (Thailand))
Keywords:
chemoenzymatic,iodination,phenolic acids,pyranose 2-oxidase,green chemistry
Sustainable valorization of biomass-derived aromatics is essential for green chemical manufacturing. Palm oil mill effluent (POME), a major agro-industrial wastewater, contains phenolic acids such as p-hydroxybenzoic acid (p-HBA) that inhibit anaerobic digestion but represent valuable chemical feedstocks. Here, we demonstrate a scalable chemoenzymatic platform for selective iodination of p-HBA, vanillic acid (VA), and ferulic acid (FA) using pyranose 2-oxidase (P2O) to generate hydrogen peroxide in situ under mild aqueous conditions. Buffer screening revealed that Tris-HCl, HEPES, and sodium phosphate best promoted mono-iodination of p-HBA, VA, and FA, respectively. Compared to direct H2O2 addition, P2O-mediated oxidant supply improved selectivity for 3-iodo-p-HBA (15% vs 21%), suppressed di-iodination, and prevented oxidative coupling of FA. Liter-scale reactions retained small-scale efficiency, achieving >99% conversion and 93% yield for VA, and 89% conversion with 88% yield for FA. Moreover, direct conversion of POME-derived p-HBA yielded 3-iodo-p-HBA (19%), confirming compatibility with real wastewater matrices. This work establishes P2O-driven iodination as a mild, selective, and scalable route for synthesizing iodinated aromatics from waste-derived phenolics, providing a green alternative to conventional halogenation and advancing sustainable biorefinery development.
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