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Pilot-scale simultaneous coupling ozonation and biodegradation for enhancing pollutant removal and mitigating antibiotic resistance genes in penicillin intermediate wastewater.

Created on 31 Aug 2026

Authors

Jiage Li, Yansong Liu, Jin Zhang, Yanan Zhang, Xiaomei Wang, Ximin Han, Shousen Zhang, Zhenhao Zhao, Shuangshi Dong

Published in

Bioresource technology. Pages 135749. Aug 30, 2026. Epub Aug 30, 2026.

Abstract

Penicillin intermediate wastewater contains recalcitrant organics and residual antibiotics that favor the enrichment of antibiotic-resistant bacteria and the dissemination of antibiotic resistance genes (ARGs). In this study, a pilot-scale simultaneous coupling ozonation and biodegradation (SCOB) system was applied to treat the secondary biochemical effluent of penicillin intermediate wastewater. The reactor achieved stable operation under selected conditions of a 6 h hydraulic retention time, a 2 h ozone supply period, and an ozone dosage of 5 mg/(L·h). Compared with the standalone biodegradation system, the SCOB system enhanced chemical oxygen demand removal by 25.90%, UV254 removal by 31.34%, and a 34.93-fold increase in chroma removal. The SCOB system attenuated both chronic and acute toxicity in the effluent. Microbial analyses revealed that, despite lower biomass, microbial activity increased by 21.04% in the SCOB system, accompanied by distinct community succession, with Proteobacteria, Actinobacteria, and Chloroflexi as the dominant phyla and Hyphomicrobium as the dominant genus. The SCOB system also reduced intracellular reactive oxygen species levels and suppressed ARGs abundance and dissemination. The total abundance of ARGs decreased by 10.34%, while multidrug resistance plasmids were reduced by 25.40%. This study provides engineering guidance for developing pilot-scale SCOB as an advanced treatment strategy for simultaneously achieving pollutant removal and ARGs risk mitigation in antibiotic-containing wastewater.

PMID:
42669367
Bibliographic data and abstract were imported from PubMed on 31 Aug 2026.

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