IHSS&IWA26 / BRNO / CZECHIA / 23–28 August 2026 / Book of Abstracts

BOOK OF ABSTRACTS 277 IHSS&IWA26 / BRNO / CZECHIA / 23–28 August 2026 Hall A Poster Session / Technologies and Applications hydrophobic POPs in saline waters reflects the movement of particle-bubble aggregates within the reactor. The relative importance of these pathways depends on ionic strength, particle density, and the structure of gas-particle aggregates formed during electrolysis. Resolving these interfacial transport processes provides mechanistic insight that can inform the design of electrochemical separation systems for persistent contaminants in saline industrial wastewater. References 1. Rodrigues, J.P., et al., Significance of interactions between microplastics and POPs in the marine environment: A critical overview. TrAC Trends in Analytical Chemistry, 2019. 111: p. 252-260. 2. Liu, Y.-J., et al., Removal of nonsteroidal anti-inflammatory drugs (NSAIDs) by electrocoagulation–flotation with a cationic surfactant. Separation and Purification Technology, 2015. 152: p. 148-154. 3. Mollah, M.Y.A., Schennach, R., Parga, J. R., Cocke, D. L., Electrocoagulation (EC) - science and applications. J Hazard Mater, 2001. 84(1): p. 29-41. 4. Yang, X., et al., Unveiling the Vertical Migration of Microplastics with Suspended Particulate Matter in the Estuarine Environment: Roles of Salinity, Particle Properties, and Hydrodynamics. Environmental Science & Technology, 2024. 58(6): p. 2944-2955. Acknowledgement This work supported by the National Science and Technology Council of Taiwan under project number 113-2221-E-038-013-MY3, and University Systems of Taipei Joint Research Program under project number USTP-NTOU-TMU-114-04.

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