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2025 (English)In: Environmental Science and Technology Letters, E-ISSN 2328-8930, Vol. 12, no 9, p. 1218-1224Article in journal (Refereed) Published
Abstract [en]
Most known per- and polyfluoroalkyl substances (PFAS) bioaccumulate by binding to proteins or partitioning to phospholipids, leading to their prevalence in liver and blood. However, the recent discovery of high concentrations of unidentified extractable organofluorine (EOF) in the blubber of a killer whale (Orcinus orca) from Greenland suggests that some fluorinated substances preferentially bioaccumulate in storage lipids. To further investigate this, the present work examined blubber from 4 killer whales (3 from Greenland, 1 from Sweden) via gas chromatography-atmospheric pressure chemical ionization-ion mobility mass spectrometry. Using collision cross sections, we prioritized features suspected to be highly fluorinated and then selected 5 for manual annotation. Custom synthesized standards confirmed 10:2 and 12:2 fluorotelomer methylsulfone, 10:2 and 12:2 fluorotelomer chloromethylsulfone, and 6:2 bisfluorotelomer sulfone in all blubber samples from Greenland at concentrations ranging from <0.4 to 72.5 ng/g, explaining 34–75% of blubber EOF, but none in the Swedish sample. None of these substances were observable in liver, suggesting preferential accumulation in storage lipids. To the best of our knowledge, this is the first report of neutral fluorotelomer sulfones in wildlife and the first identification of lipophilic, highly fluorinated PFAS.
Keywords
Combustion ion chromatography, gas chromatography ion mobility mass spectrometry, marine mammals, Orcinus orca, cetaceans, nontarget screening, PFAS
National Category
Environmental Sciences Analytical Chemistry
Research subject
Environmental Chemistry; Analytical Chemistry; Environmental Sciences
Identifiers
urn:nbn:se:su:diva-241169 (URN)10.1021/acs.estlett.5c00516 (DOI)001550955000001 ()2-s2.0-105015580293 (Scopus ID)
Funder
EU, Horizon 2020, 860665EU, Horizon Europe, 101150779
2025-03-232025-03-232025-09-25Bibliographically approved