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Om sediments would therefore outcome from a mechanism that was not related to respiratory uptake in the dissolved phase or one particular that was nearby and not reflected inside the water column Cdis.SUPPLEMENTAL DATASections S1 3. Figures S1 3. (190 KB PDF).Acknowledgment–J. Nakano with the National Institute for Environmental Studies helped in the evaluation of dissolved organic carbon.REFERENCES 1. Giesy JP, Kannan K. 2002. Perfluorochemical surfactants in the environment. Environ Sci Technol 36:146A52A. 2. United Nations. 2009. Adoption of amendments to annexes A, B, and C of Stockholm Convention on Persistent Organic Pollutants. XXVII.15. New York, NY, USA. three. Hansen KJ, Clemen LA, Ellefson ME, Johnson HO. 2001. Compoundspecific, quantitative characterization of organic fluorochemicals in biological matrices. Environ Sci Technol 35:76670. 4. Sakurai T, Serizawa S, Isobe T, Kobayashi J, Kodama K, Kume G, Lee JH, Maki H, Imaizumi Y, Suzuki N, Horiguchi T, Morita M, Shiraishi H. 2010. Spatial, phase, and temporal distributions of perfluorooctane sulfonate (PFOS) and perfluorooctanoate (PFOA) in Tokyo Bay, Japan. Environ Sci Technol 44:4110115. 5. Haug LS, Thomsen C, Brantsaeter AL, Kvalem HE, Haugen M, Becher G, Alexander J, Meltzer HM, Knutsen HK. 2010. Diet and especially seafood are big sources of perfluorinated compounds in humans. Environ Int 36:77278.Transfer kinetics of PFOS in water and sediment to fish 29. Tolls J, Sijm DTHM. 1995. A preliminary evaluation of the partnership between bioconcentration and hydrophobicity for surfactants. Environ Toxicol Chem 14:1675685. 30. Kissa E. 2001. Fluorinated Surfactants and Repellents, 2nd ed. Marcel Dekker, New York, NY, USA. 31. Ankley GT, Kuehl DW, Kahl MD, Jensen KM, Butterworth BC, Nichols JW. 2004. Partial life-cycle toxicity and bioconcentration modeling of perfluorooctanesulfonate within the northern leopard frog (Rana pipiens). Environ Toxicol Chem 23:2745755. 32. Yamamoto K, Hirano O, Hashimoto M, Takahashi M. 1988. Modifications of oxygen consumption in black stripe gudgeon, longnose barbel, biwa gudgeon, lakeweed chub, bald gigi and bluegill beneath progressive hypoxia.PEN (human) In Vivo Suisanzoshoku 36:12730 (in Japanese).N-Acetylcysteine amide In stock 33.PMID:24377291 Winberg GG. 1956. Price of Metabolism and Meals Needs of Fishes. Translation Series 194 (1960). Fisheries Study Board of Canada, Nanaimo, Canada. 34. Kawana K, Handa T, Baba Y, Iwata N, Uematsu K, Namba K. 2008. Eco-physiological effects of suspended solids on fish–Effects of smectite on the respiration from the Japanese flounder Paralichthys olivaceus. Nippon Suisan Gakkaishi 74:37579 (in Japanese).Environ Toxicol Chem 32,35. Sharpe RL, Benskin JP, Laarman AH, MacLeod SL, Martin JW, Wong CS, Goss GG. 2010. Perfluorooctane sulfonate toxicity, isomer-specific accumulation, and maternal transfer in zebrafish (Danio rerio) and rainbow trout (Oncorhynchus mykiss). Environ Toxicol Chem 29:1957966. 36. Labadie P, Chevreuil M. 2011. Partitioning behaviour of perfluorinated alkyl contaminants between water, sediment and fish inside the Orge River (nearby Paris, France). Environ Pollut 159:39197. 37. Ankley GT, Kuehl DW, Kahl MD, Jensen KM, Linnum A, Leino RL, Villeneuve DA. 2005. Reproductive and developmental toxicity and bioconcentration of perfluorooctanesulfonate inside a partial life-cycle test using the fathead minnow (Pimephales promelas). Environ Toxicol Chem 24:2316324. 38. Tulp MTM, Haya K, Carson WG, Zitko V, Hutzinger O. 1979. Effect of salinity on uptake of 14C-2,20 ,4,five,50 -pentachl.

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