Indirect photolysis of perfluorochemicals: hydroxyl radical-initiated oxidation of N-ethyl perfluorooctane sulfonamido acetate (N-EtFOSAA) and other perfluoroalkanesulfonamides

Plumlee, MH; Mcneill, K; Reinhard, M

HERO ID

1044567

Reference Type

Journal Article

Year

2009

Language

English

PMID

19544870

HERO ID 1044567
In Press No
Year 2009
Title Indirect photolysis of perfluorochemicals: hydroxyl radical-initiated oxidation of N-ethyl perfluorooctane sulfonamido acetate (N-EtFOSAA) and other perfluoroalkanesulfonamides
Authors Plumlee, MH; Mcneill, K; Reinhard, M
Journal Environmental Science & Technology
Volume 43
Issue 10
Page Numbers 3662-3668
Abstract Selected perfluorinated surfactants were irradiated in aqueous hydrogen peroxide solutions using artificial sunlight to study transformation under aquatic environmental conditions. Indirect photolysis mediated by hydroxyl radical was observed for N-ethyl perfluorooctane sulfonamidoethanol (N-EtFOSE), N-ethyl perfluorooctane sulfonamido acetate (N-EtFOSAA), N-ethyl perfluorooctane sulfonamide (N-EtFOSA), and perfluorooctane sulfonamide acetate (FOSAA). An upper limitforthe bimolecular reaction rate constant for reaction of *OH and N-EtFOSAA was determined to be (1.7 +/- 0.7) x 10(9) M(-1)s(-1). A proposed reaction pathwayfor degradation of the parent perfluorochemical, N-EtFOSE, to the other perfluoroalkanesulfonamides and perfluorooctanoate (PFOA) was developed and includes oxidation and N-dealkylation steps. As they did not undergo additional degradation, perfluorooctane sulfonamide (FOSA) and PFOA were the final degradation products of hydroxyl radical-initiated oxidation. UV-visible absorption spectra for the perfluorochemicals, showing absorbance in the UV region below the range of natural sunlight are also reported. In sunlit environments, indirect photolysis of perfluorochemicals is likely to be important in the determination of their environmental fate given the slow rates expected for biotransformation and weak sorption. Photolytic conversion of perfluorochemicals into refractory perfluorinated acids, mainly PFOA, could mean that a significant fraction of these compounds will accumulate in the world's oceans.
Doi 10.1021/es803411w
Pmid 19544870
Wosid WOS:000266046700043
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English
Keyword Fluorocarbons; N-ethyl perfluorooctane sulfonamido acetate; Sulfonamides; Hydroxyl Radical; 3352-57-6; Methanol; Y4S76JWI15; Index Medicus; Oxidation-Reduction; Environment; Kinetics; Methanol -- chemistry; Spectrophotometry, Ultraviolet; Sulfonamides -- chemistry; Photolysis; Hydroxyl Radical -- chemistry; Fluorocarbons -- chemistry
Is Qa No