Atmospheric chemistry of N-methyl perfluorobutane sulfonamidoethanol, C4F9SO2N(CH3)CH2CH2OH:: Kinetics and mechanism of reaction with OH

被引:268
作者
D'Eon, JC
Hurley, MD
Wallington, TJ
Mabury, SA
机构
[1] Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada
[2] Ford Motor Co, Dearborn, MI 48121 USA
关键词
D O I
10.1021/es0520767
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Relative rate methods were used to measure the gas-phase reaction of N-methyl perfluorobutane sulfonamido-ethanol (NMeFBSE) with OH radicals, giving k(OH + NMeFBSE) = (5.8 +/- 0.8) x 10(-1)2 cm(3\) molecule(-1) s(-1) in 750 Torr of air diluent at 296 K. The atmospheric lifetime of NMeFBSE is determined by reaction with OH radicals and is approximately 2 days. Degradation products were identified by in situ FTIR spectroscopy and offline GC-MS and LC-MS/MS analysis. The primary carbonyl product C4F9-SO2N(CH3)CH2CHO, N-methyl perfluorobutane sulfonamide (C4F9SO2NH(CH3)), perfluorobutanoic acid (C3F7C(O)OH), perfluoropropanoic acid (C2F5C(O)OH), trifluoroacetic acid (CF3C(O)OH), carbonyl fluoride (COF2), and perfluorobutane sulfonic acid (C4F9SO3H) were identified as products. A mechanism involving the addition of OH to the sulfone double bond was proposed to explain the production of perfluorobutane sulfonic acid and perfluorinated carboxylic acids in yields of 1 and 10%, respectively. The gas-phase N-dealkylation product, N-methyl perfluorobutane sulfonamide (NMeFBSA), has an atmospheric lifetime (> 20 days) which is much longer than that of the parent compound, NMeFBSE. Accordingly,the production of NMeFBSA exposes a mechanism by which NMeFBSE may contribute to the burden of perfluorinated contamination in remote locations despite its relatively short atmospheric lifetime. Using the atmospheric fate of NMeFBSE as a guide, it appears that anthropogenic production of N-methyl perfluorooctane sulfonamidoethanol (NMeFOSE) contributes to the ubiquity of perfluoroalkyl sulfonate and carboxylate compounds in the environment.
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页码:1862 / 1868
页数:7
相关论文
共 41 条
[1]  
3M, 1999, AR2260550 3M
[2]   Atmospheric chemistry of CF3OCF2CF2H and CF3OC(CF3)2H:: Reaction with Cl atoms and OH radicals, degradation mechanism, global warming potentials, and empirical relationship between k(OH) and k(Cl) for organic compounds [J].
Andersen, MPS ;
Nielsen, OJ ;
Wallington, TJ ;
Hurley, MD .
JOURNAL OF PHYSICAL CHEMISTRY A, 2005, 109 (17) :3926-3934
[3]   HOMOLYTIC BOND-DISSOCIATION ENERGIES IN SOLUTION FROM EQUILIBRIUM ACIDITY AND ELECTROCHEMICAL DATA [J].
BORDWELL, FG ;
CHENG, JP ;
HARRELSON, JA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1988, 110 (04) :1229-1231
[4]  
Calvert J.G., 2000, The mechanisms of atmospheric oxidation of the alkenes
[5]   Isolating isomers of perfluorocarboxylates in polar bears (Ursus maritimus) from two geographical locations [J].
De Silva, AO ;
Mabury, SA .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2004, 38 (24) :6538-6545
[6]   Atmospheric lifetime of fluorotelomer alcohols [J].
Ellis, DA ;
Martin, JW ;
Mabury, SA ;
Hurley, MD ;
Andersen, MPS ;
Wallington, TJ .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2003, 37 (17) :3816-3820
[7]   Degradation of fluorotelomer alcohols: A likely atmospheric source of perfluorinated carboxylic acids [J].
Ellis, DA ;
Martin, JW ;
De Silva, AO ;
Mabury, SA ;
Hurley, MD ;
Andersen, MPS ;
Wallington, TJ .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2004, 38 (12) :3316-3321
[8]  
*ENV AG, 2004, ENV RISK EV REP PERF
[9]  
Finlayson-Pitts B.J., 1999, CHEM UPPER LOWER ATM, V1st
[10]   Global distribution of perfluorooctane sulfonate in wildlife [J].
Giesy, JP ;
Kannan, K .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2001, 35 (07) :1339-1342