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Polyfluorinated chemicals in a spatially and temporally integrated food web in the Western Arctic
Authors:Powley Charles R  George Stephen W  Russell Mark H  Hoke Robert A  Buck Robert C
Institution:E.I. DuPont de Nemours & Co., Inc., P.O. Box 50, Newark, DE 19714-0050, USA. chuck.powley@usa.dupont.com
Abstract:This study reports on an investigation of the presence of polyfluorinated chemicals in a spatially and temporally integrated set of biological samples representing an Arctic food web. Zooplankton, Arctic cod, and seal tissues from the western Canadian Arctic were analyzed for perfluoroalkyl sulfonates PFAS], perfluorocarboxylates PFCAs], and other polyfluorinated acids. Perfluorooctane sulfonate PFOS] was found in all samples 0.20-34 ng/g] and in the highest concentrations. PFCAs from nine to 12 carbons were quantified in most of the samples 0.28-6.9 ng/g]. PFCAs with carbon chain lengths of eight or less were not detected. Likewise, 8-2 fluorotelomer acid 8-2 FTA] and 8-2 fluorotelomer unsaturated acid 8-2 FTUA], products of fluorotelomer environmental transformation, were not detected. 2H,2H,3H,3H, heptadecafluoro decanoic acid 7-3 Acid], an additional metabolite from fluorotelomer biological transformation, was detected only in seal liver tissue 0.5-2.5 ng/g]. The ratios of branched to linear PFOS isomers in fish and seal tissue were not similar and did not match that of technical PFOS as manufactured. No branched PFCA isomers were detected in any samples. It is concluded that differing pharmacokinetics complicate the use of branched to linear ratios of PFCAs in attributing their presence to a specific manufacturing process. A statistical analysis of the data revealed significant correlations between PFOS and the PFCAs detected as well as among the PFCAs themselves. The 7-3 Acid was not correlated with either PFCAs or PFAS, which suggests that it may have a different exposure pathway.
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