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◆ Journal of hazardous materials2026-08-29

Effects of UVC/H2O2 on dissolved organic matter derived from a cyanobacterial bloom.

Sofia Iliakopoulou, Theodoros M Triantis, Maria Antonopoulou, Giovanni Andrea Vitale, Abzer K Pakkir Shah, Daniel Petras, Anastasia Hiskia, Triantafyllos Kaloudis

原始摘要(英文原文)· Original abstract
Cyanobacterial blooms release complex metabolite mixtures, yet their degradation during water treatment remains poorly understood. This study investigates the degradation of cyanometabolite-rich natural bloom extracts using UVC/H2O2 to generate hydroxyl radicals (HO•). By applying LC-HR-MS/MS combined with computational metabolomics, we identified nine microcystins (MCs), four anabaenopeptins (APs), and sixteen microginins (MGs), proposing structures for five new congeners and two novel transformation products (TPs). UVC/H2O2 accelerated cyanopeptide degradation compared to individual control treatments. Kinetics were described by a second-order time-dependent polynomial model, reflecting matrix heterogeneity, dynamic HO• scavenging by oxidation intermediates, and H2O2 self-scavenging. Molecular networking and network annotation propagation (NAP) facilitated the detection of known MC TPs alongside new oxidative cleavage products for MGs and APs. Compositional profiling revealed distinct molecular restructuring post-treatment, characterized by decreasing nitrogen-rich peptides and a concurrent relative increase in lipids and fatty acids. Overall, this workflow provides crucial insights into HO•-driven transformation pathways within complex cyano-HAB mixtures during advanced oxidation.
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Effects of UVC/H2O2 on dissolved organic matter derived from a cyanobacterial bloom. — 科研速览 Science Skim