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Removal and transformation of pharmaceutical compounds in constructed wetlands: A comparative full-scale study

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dc.contributor.author Valdes, M. E.
dc.contributor.author Wolacewicz, M.
dc.contributor.author Sacristan-Soriano, O.
dc.contributor.author Țapu, Livia
dc.contributor.author Galben, Lucia
dc.contributor.author Balcazar, J. L.
dc.contributor.author Lomeli-Ortega, C. O.
dc.contributor.author Todiraş, Mihail
dc.contributor.author Ferdohleb, Alina
dc.contributor.author Dziewit, Lukasz
dc.contributor.author Rodriguez-Mozaz, S.
dc.contributor.author Borrego Carles, M.
dc.date.accessioned 2025-09-09T06:42:41Z
dc.date.available 2025-09-09T06:42:41Z
dc.date.issued 2025
dc.identifier.citation VALDES, M. E., M. WOLACEWICZ, O. SACRISTAN-SORIANO, Livia ȚAPU, Lucia GALBEN, J. L BALCAZAR, C. O. LOMELI-ORTEGA, Mihail TODIRAŞ, Alina FERDOHLEB, Lukasz DZIEWIT, S. RODRIGUEZ-MOZAZ and Carles M. BORREGO. Removal and transformation of pharmaceutical compounds in constructed wetlands: A comparative full-scale study. In: International Conference on Chemistry and the Environment: ICCE 2025, Ed. 19, 8-12 iunie 2025, Belgrade. Belgrade: Serbian Chemical Society, 2025, p. 80. ISBN (pdf) 978-86-7132-088-7. en_US
dc.identifier.isbn 978-86-7132-088-7
dc.identifier.uri https://repository.usmf.md/handle/20.500.12710/31097
dc.identifier.uri https://cherry.chem.bg.ac.rs/handle/123456789/7084?show=full
dc.description Authors thank to JPIAMR as members of PhageLand project (PCI2021-122109-2A), to the Economy and Knowledge Department of the Catalan Government through a Consolidated Research Group (ICRA-ENV - 2021 SGR 01282). The Acquity UPLC-MS QTRAP 5500, Waters-SCIEX facility received support from the CERCA Institute through the CERCAGINYS program, funded by the Spanish Ministry of Science and Innovation. en_US
dc.description.abstract Pharmaceutically active compounds (PhACs) need to be removed from wastewater, given the risks they may pose to biota and human health. Constructed wetlands (CW) offer a cost-efficient and eco-friendly solution. However, research is needed at full-scale level to understand the transformation processes of PhACs inside CW. This study aimed to evaluate and compare the removal and transformation of PhACs in 2 full-scale CW with different configurations and a passive treatment system at pilot scale (PP) as control wastewater system. The PP treated urban wastewater in a combination of horizontal and vertical filtering. The full-scale CW were: 1) a vertical flow CW (Orhei-OCW), treating urban wastewater, and 2) a free-water surface CW (Empuriabrava-ECW) treating the effluent of a secondary wastewater treatment plant, both planted with Phragmites australis. A set of 60 PhACs, including 10 metabolites, were analysed by UPLC-MS/MS and transformation products (TPs) by UPLC-HRMS through the treatment chain of the 3 systems. Antibiotics and beta-blockers were more efficiently removed in vertical flow CW (92 and 83% removal, respectively) compared to other configurations, while psychiatrics were the more persistent PhACs in the 3 configurations (Fig.1). Full-scale CW planted with Phragmites worked better compared to the plant-free PP, highlighting the role of macrophytes in the removal processes. Metabolites, however, were formed along the treatment, increasing their concentrations and possible risk to aquatic biota. Considering both parent and TPs, the risk of detected PhACs in fullscale CW decreased after treatment. en_US
dc.language.iso en en_US
dc.relation.ispartof International Conference on Chemistry and the Environment: ICCE 2025, Ed. 19, 8-12 iunie 2025, Belgrade en_US
dc.title Removal and transformation of pharmaceutical compounds in constructed wetlands: A comparative full-scale study en_US
dc.type Other en_US


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