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Pan-continental assessment of socioeconomic and environmental predictors of PFAS occurrence in European rivers from a harmonised monitoring study

  • Jun Li*
  • , Alistair B.A. Boxall*
  • , Caroline Swan
  • , Selwyn Hoeks
  • , Racliffe W.S. Lai
  • , John L. Wilkinson
  • , Recep C. Altinbag
  • , Åsa Arrhenius
  • , Roman Ashauer
  • , Thomas Backhaus
  • , Besnik Baraj
  • , Vasiliki G. Beretsou
  • , Michelle C. Bloor
  • , Alejandra Bouzas‐Monroy
  • , Conor Campbell
  • , Magdalena Cara
  • , Orges Cara
  • , Elia Ceppi
  • , Vesna Cerkvenik-Flajs
  • , Arnaud Chaumot
  • Parviel Chirsir, Claudia Coll, Melina C. Crettaz-Minaglia, Karel De Schamphelaere, Qian Deng, Ahmed Džeferagić, Despo Fatta-Kassinos, Kathrin Fenner, Gianfranco Frigerio, Emil E. Frøkjær, Caroline Gauchotte-Lindsay, Sandra D. Georgsdóttir, Stuart W. Gibb, Mitja Gombač, Lana Graves, Merete Grung, Maider Guiu, Hermann D. Guls, Halldór P. Halldórsson, Martin Hansen, Edgar Hiller, Tina Hirsch, Thilo Hofmann, Edin Hrelja, Morten Jartun, Päivi P. Järvinen, Jolly Komolo, Krystyna A. Koziol, Klaus Kümmerer, Warich Leekitratanapisan, Unax Lertxundi, Gerasimos Lyberatos, Theopisti Lymperopoulou, Célia M. Manaia, Nicole McGimpsey, Mulatu Y. Nanusha, Lydia M. Niemi, Mihai R. Niță, Olga C. Nunes, Dylan O'Flynn, Rik Oldenkamp, Oliver Olsson, Turgut T. Onay, Gorka Orive, Sergejs Osipovs, Peter Oswald, Martina Oswaldova, Wolf Ulrich Palm, Luisa Patrolecco, Tiia Pedusaar, Tanita Pescatore, Stefano Polesello, Ana Maria Popa, Malte Posselt, Ana Puljko, Aleksandrs Pučkins, Kalina R. Radeva, Jasmin Rauseo, Rémi Recoura-Massaquant, Paula E. Redondo-Hasselerharm, Fiona Regan, Andreu Rico, Charlotte Robison-Smith, Marianna Rusconi, Magdalini Sarntaridou, Jonas R. Schneider, Emma L. Schymanski, Tiina M. Sikanen, Anna Snell, David A. Snell, Francesca Spataro, Veronika Špirová, Martin Stockhausen, Danuta Szumińska, Mark A. Taggart, Eve C. Tarring, Ulas Tezel, Lei Tong, Nikolina Udiković-Kolić, Suat Vardar, Jan Vymazal, Gabriel O. Vânău, Britt Wassmur, Blánaid White, Christiane Zarfl
*Corresponding author for this work
  • University of York
  • Radboud University Nijmegen
  • University of Macau
  • Bogazici University
  • University of Gothenburg
  • RWTH Aachen University
  • University of Tirana
  • University of Cyprus
  • University of Glasgow
  • Dublin City University
  • Agricultural University of Tirana
  • University of Bari
  • Swiss Federal Institute of Aquatic Science and Technology
  • University of Ljubljana
  • Irstea
  • University of Luxembourg
  • Universidad Rey Juan Carlos
  • Ghent University
  • University of Sarajevo
  • University of Iceland
  • University of the Highlands and Islands
  • University of Tübingen
  • Norwegian Institute for Water Research
  • Comenius University
  • University of Vienna
  • University of Helsinki
  • Kazimierz Wielki University
  • Leuphana University of Lüneburg
  • Bioaraba Health Research Institute
  • National Technical University of Athens
  • Catholic University of Portugal
  • University of Bucharest
  • University of Porto
  • Vrije Universiteit Amsterdam
  • University of the Basque Country
  • Daugavpils University
  • Environmental Institute, s.r.o.
  • National Research Council of Italy
  • Estonian University of Life Sciences
  • Stockholm University
  • Ruder Boskovic Institute
  • Sofia University St. Kliment Ohridski
  • IMDEA Water Institute
  • University of Valencia
  • Cardiff University
  • Institut für Hygiene und Umwelt
  • China University of Geosciences, Wuhan
  • Czech University of Life Sciences Prague

Research output: Contribution to journalJournal articleResearchpeer-review

Abstract

Per- and polyfluoroalkyl substances (PFAS) are persistent contaminants that are widely detected in surface waters and are of growing global concern. However, the factors associated with variations in PFAS contamination across space and time at a continental scale remain poorly understood. Here, we combine results from a harmonised pan-European river monitoring study with partial least squares path modelling (PLS-PM) to identify the key factors associated with PFAS contamination in European rivers. Seven high-priority PFAS were monitored at 280 sites across 93 rivers in 31 European countries, representing the PFAS footprint of approximately 309 million people. At least one PFAS was detected at 93% of monitoring locations. Highest concentrations were observed in parts of southern, southeastern and western Europe and were associated with landfills, wastewater discharges and industrial activity. Higher PFAS concentrations occurred in summer, potentially reflecting dilution-related effects associated with lower flow conditions. PLS-PM revealed that PFAS concentrations were associated with socioeconomic pressures and environmental conditions. The Human Footprint Index showed the strongest association among the socioeconomic variables examined, while electrical conductivity was the environmental variable most strongly associated with PFAS concentrations, possibly reflecting shared transport pathways with wastewater and industrial effluents. An indicative, screening-level assessment against existing regulatory threshold values suggested that PFAS concentrations at 61% of sites are of potential concern. These findings support the use of combined human pressure and hydrochemical indicators to inform more targeted, risk-based monitoring and regulatory prioritisation at large spatial scales.

Original languageEnglish
Article number126481
JournalWater Research
Volume305
Number of pages13
ISSN0043-1354
DOIs
Publication statusPublished - 2026

Keywords

  • Per- and polyfluoroalkyl substances (PFAS)
  • European river monitoring
  • Spatio-temporal patterns

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