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Publications (4 of 4) Show all publications
Figuière, R., Miaz, L. T., Savvidou, E. & Cousins, I. T. (2025). An Overview of Potential Alternatives for the Multiple Uses of Per- and Polyfluoroalkyl Substances. Environmental Science and Technology, 59(4), 2031-2042
Open this publication in new window or tab >>An Overview of Potential Alternatives for the Multiple Uses of Per- and Polyfluoroalkyl Substances
2025 (English)In: Environmental Science and Technology, ISSN 0013-936X, E-ISSN 1520-5851, Vol. 59, no 4, p. 2031-2042Article in journal (Refereed) Published
Abstract [en]

Per- and polyfluoroalkyl substances (PFAS) are used in a wide range of different industrial and consumer applications. However, due to their extreme environmental persistence and their impacts on human and ecosystem health, PFAS have been subject to many regulatory activities, including initiatives to incentivize industry to transition toward PFAS-free alternatives. Although efforts have been made to map all uses of PFAS, work is still needed to provide an overview of their potential alternatives. Based on the functional substitution approach, this study develops an online database that documents all known uses of PFAS, describes the functions provided by PFAS in these uses, lists potential alternatives that can deliver equivalent or similar functions to PFAS, and evaluates the suitability of the identified alternatives to replace PFAS. Overall, the database lists 325 different applications of PFAS across 18 use categories. In total, 530 PFAS-free alternatives are identified. Based on a screening of potential concerns of the identified alternatives, their performance compared to PFAS, and their availability on the market, it is concluded that potentially suitable alternatives to PFAS are available for 40 different applications. For 83 applications, no alternatives could be identified at the time of the study and should be the focus of further research activities.

Keywords
Functional substitution, Regrettable subsitution, Alternatives assessment, PFAS-free, Database
National Category
Environmental Sciences
Research subject
Environmental Sciences
Identifiers
urn:nbn:se:su:diva-238365 (URN)10.1021/acs.est.4c09088 (DOI)001406219400001 ()2-s2.0-85216257876 (Scopus ID)
Available from: 2025-01-21 Created: 2025-01-21 Last updated: 2025-02-18Bibliographically approved
Tian, R., Posselt, M., Miaz, L. T., Fenner, K. & McLachlan, M. S. (2024). Influence of Season on Biodegradation Rates in Rivers. Environmental Science and Technology, 58(16), 7144-7153
Open this publication in new window or tab >>Influence of Season on Biodegradation Rates in Rivers
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2024 (English)In: Environmental Science and Technology, ISSN 0013-936X, E-ISSN 1520-5851, Vol. 58, no 16, p. 7144-7153Article in journal (Refereed) Published
Abstract [en]

Biodegradation plays a key role in the fate of chemicals in the environment. The variability of biodegradation in time can cause uncertainty in evaluating the environmental persistence and risk of chemicals. However, the seasonality of biodegradation in rivers has not yet been the subject of environmentally relevant testing and systematic investigation for large numbers of chemicals. In this work, we studied the biodegradation of 96 compounds during four seasons at four locations (up- and downstream of WWTPs located on two Swedish rivers). Significant seasonality (ANOVA, p < 0.05) of the first-order rate constant for primary biodegradation was observed for most compounds. Variations in pH and total bacterial cell count were not the major factors explaining the seasonality of biodegradation. Deviation from the classical Arrhenius-type behavior was observed for most of the studied compounds, which calls into question the application of this relationship to correct biodegradation rate constants for differences in environmental temperature. Similarities in magnitude and seasonality of biodegradation rate constants were observed for some groups of chemicals possessing the same functional groups. Moreover, reduced seasonality of biodegradation was observed downstream of WWTPs, while biodegradation rates of most compounds were not significantly different between up- and downstream.

Keywords
biodegradation, seasonality, up- and downstream, micropollutants, total cell count
National Category
Environmental Sciences
Identifiers
urn:nbn:se:su:diva-228129 (URN)10.1021/acs.est.3c10541 (DOI)001190733500001 ()38527158 (PubMedID)2-s2.0-85188693718 (Scopus ID)
Available from: 2024-04-10 Created: 2024-04-10 Last updated: 2024-09-13Bibliographically approved
Muir, D. & Miaz, L. T. (2021). Spatial and Temporal Trends of Perfluoroalkyl Substances in Global Ocean and Coastal Waters. Environmental Science and Technology, 55(14), 9527-9537
Open this publication in new window or tab >>Spatial and Temporal Trends of Perfluoroalkyl Substances in Global Ocean and Coastal Waters
2021 (English)In: Environmental Science and Technology, ISSN 0013-936X, E-ISSN 1520-5851, Vol. 55, no 14, p. 9527-9537Article in journal (Refereed) Published
Abstract [en]

Per- and polyfluoroalkyl substances (PFAS) have been widely detected in global surface waters since the early 2000s. Here, we have compiled and analyzed the published data for perfluorocarboxylates (PFCAs) and perfluorosulfonates (PFSAs) in surface waters of coastal seas, the Great Lakes, and open oceans to examine temporal and geospatial trends. Mass discharges from major rivers were also estimated. A large number of measurements of individual PFAS have been made in these surface waters (29 500 values), with seven C4-C10 PFSAs and nine C4-C12 PFCAs accounting for 83% of all data. However, most results (85% for PFSAs; 80% for PFCAs) were for the coastal seas of Western Europe, China, Korea, and Japan, while results were limited for coastal North America and lacking for South America and Africa. Highest median concentrations of PFCAs and PFSAs were reported in the Bohai and Yellow Seas region of China as well as in the North and Baltic seas in Europe. Significant declines in median PFSAs and C7-C12 PFCAs were also observed for the period 2012-2018 in these same regions, and for 2004-2017 in the Great Lakes. Mass discharge estimates indicated continued substantial riverine emissions of long chain (C7-C12) PFCAs in the period 2015-2019 for the coastal seas of China and reductions in emissions for Western European rivers compared to earlier time periods.

Keywords
per- and polyfluoroalkyl substances, PFAS, oceans, seas, mass discharges, PFOS, PFOA
National Category
Earth and Related Environmental Sciences
Identifiers
urn:nbn:se:su:diva-197138 (URN)10.1021/acs.est.0c08035 (DOI)000677482500015 ()33646763 (PubMedID)
Available from: 2021-09-27 Created: 2021-09-27 Last updated: 2025-02-07Bibliographically approved
Miaz, L. T., Plassmann, M. M., Gyllenhammar, I., Bignert, A., Sandblom, O., Lignell, S., . . . Benskin, J. P. (2020). Temporal trends of suspect- and target-per/polyfluoroalkyl substances (PFAS), extractable organic fluorine (EOF) and total fluorine (TF) in pooled serum from first-time mothers in Uppsala, Sweden, 1996–2017. Environmental Science: Processes & Impacts, 22(4), 1071-1083
Open this publication in new window or tab >>Temporal trends of suspect- and target-per/polyfluoroalkyl substances (PFAS), extractable organic fluorine (EOF) and total fluorine (TF) in pooled serum from first-time mothers in Uppsala, Sweden, 1996–2017
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2020 (English)In: Environmental Science: Processes & Impacts, ISSN 2050-7887, E-ISSN 2050-7895, Vol. 22, no 4, p. 1071-1083Article in journal (Refereed) Published
Abstract [en]

A combined method for quantitative analysis, along with suspect and non-target screening of per- and polyfluoroalkyl substances (PFAS) was developed using ultra-high pressure liquid chromatography-ultra-high resolution (Orbitrap) mass spectrometry. The method was applied together with measurements of total- and extractable organofluorine (TF and EOF, respectively), to pooled serum samples from 1996–2017 from first-time mothers living in the county of Uppsala, Sweden, some of which (i.e. 148 of 472 women sampled 1996–2012) were exposed to drinking water contaminated with perfluorohexane sulfonate (PFHxS) and other PFAS until mid-2012. Declining trends were observed for all target PFAS as well as TF, with homologue-dependent differences in year of onset of decline. Only 33% of samples displayed detectable EOF, and amongst these samples the percentage of EOF explained by target PFAS declined significantly (−3.5% per year) over the entire study period. This finding corroborates prior observations in Germany after the year 2000, and may reflect increasing exposure to novel PFAS which have not yet been identified. Suspect screening revealed the presence of perfluoro-4-ethylcyclohexanesulfonate (PFECHS), which displayed declining trends since the year 2000. Non-target time trend screening revealed 3 unidentified features with time trends matching PFHxS. These features require further investigation, but may represent contaminants which co-occurred with PFHxS in the contaminated drinking water.

National Category
Earth and Related Environmental Sciences
Identifiers
urn:nbn:se:su:diva-184905 (URN)10.1039/c9em00502a (DOI)000546453900017 ()32182307 (PubMedID)
Available from: 2020-09-28 Created: 2020-09-28 Last updated: 2025-02-07Bibliographically approved
Organisations
Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0003-0996-4917

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