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Progress in Chemistry 2006, Vol. 18 Issue (06): 808-813 Previous Articles   Next Articles

• Review •

Current Research of Perfluorooctane Sulfonate

Rui Guo1;Yaqi Cai1;Guibin Jiang1*;K S Paul Lam2   

  1.  2. Research Center for Eco-Environmental Sciences, Beijing 100085, China; 2. Research Center for Coastal Pollution and Conservation, Department of Biology Chemistry, City University of Hong  Kong, Hong Kong, China
  • Received: Revised: Online: Published:
  • Contact: Guibin Jiang
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Contamination of perfluorooctane sulfonate has become global environmental problem. Scientists in developed country have put much emphasis on the research of PFOS. Recent advances and present problems in the study of PFOS are reviewed, and the developing trend in research of PFOS is also proposed.

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[ 1 ] Roger R S. Chem. Eng. News , 1999 , 77 (12) : 30
[ 2 ] Blake D K, Robert D H , Craig S C. Environ. Sci . Technol . ,1997 , 31 : 2445 —2454
[ 3 ] 金一和(Jin Y H) , 汤先伟(Tang X W) , 曹秀娟(Cao XJ ) ,张颖花(Zhang Y H) . 自然杂志(Chinese Journal of Nature) ,24 (6) : 344 —348
[ 4 ] Kissa E. Fluorinated Surfactants and Repellents , 2nd ed. NY:Marcel Dekker , 2001. 50 —70
[ 5 ] Numata T , Nanao H , Mori S , Miyake S. Tribology International ,2003 , 36 : 305 —309
[ 6 ] Jonathan W M, Kannan K, Berger U , et al . Environ. Sci .Technol . , 2004 , 38 : 249 —255
[ 7 ] Taves D R. Nature , 1968 , 217 : 1050 —1051
[ 8 ] Guy W S , Taves D R , Brey W S Jr. The 170th Meeting of the American Chemical Society , Chicago , Ill . , Aug. 26 , 1975
[ 9 ] Hansen K J , Clemen L A , Ellefson M E , Johnson H O. Environ.Sci . Technol . , 2001 , 35 : 766 —770
[10] Olsen G W, Burris J M, Mandel J H , et al . J . Occup. Environ.Med. , 1991 , 41 (9) : 799 —806
[11] Kannan K, Corsolini S , Falandysz J , et al . Environ. Sci .Technol . , 2004 , 38 : 4489 —4495
[12] Olsen G W, Church T R , Miller J P , et al . Environ. Health Perspect . , 2003 , 111 : 1892 —1901
[13] Taniyasu S , Kannan K, Horii Y, et al . Environ. Sci . Technol . ,2003 , 37 : 2634 —2639
[14] Geary W O , Kristen J H , Lisa A S , et al . Environ. Sci .Technol . , 2003 , 37 : 888 —891
[15] Kannan K, Koistinen J , Beckmen K, et al . Environ. Sci .Technol . , 2001 , 35 : 1593 —1598
[16] Giesy J P , Kannan K. Environ. Sci . Technol . , 2001 , 35 :1339 —1342
[17] So M K, Taniyasu S , Yamashita N , et al . Environ. Sci .Technol . , 2004 , 38 : 4056 —4063
[18] Bryan B , John V , Jerald L , et al . Environ. Sci . Technol . ,2004 , 38 : 4064 —4070
[19] Yamashita N , Kannan K, Taniyasu S , et al . Environ. Sci .Technol . , 2004 , 38 : 5522 —5528
[20] Martin J W, Whittle D M, Muir D C , et al . Environ. Sci .Technol . , 2004 , 38 : 5379 —5385
[21] John P V H , Benedict I K, Richard E P. Chemico-Biological Interactions , 1992 , 82 : 317 —328
[22] 金一和(Jin Y H) , 刘晓(Liu X) , 张迅(Zhang X) , 李彤(Li T) . 中国公共卫生(Chin. J . Public Health) , 2003 , 19 (10) :1200 —1201
[23] Case M T , York R G, Christian MSJ . Toxicol . , 2001 , 20 (2) :101 —109
[24] Haughom B , Spydevold O. Biochem. Biophys. Acta , 1992 , 1128(1) : 65 —72
[25] Derbel M, Hosokawa M, Satoh T. Biol . Pharm. Bull . , 1996 , 19(5) : 765 —767
[26] Nabbefeld J . Toxicologist , 1998 , 42 : 395 —398
[27] Sohlenius A K, Eriksson A M, Hostrom C , et al . Pharmacol .Toxicol . , 1993 , 72 (2) : 90 —93
[28] Moody C A , Kwan W C , Martin J W, Muir D C G, Mabury S A.Anal . Chem. , 2001 , 73 : 2200 —2206
[29] So M K, Taniyasu S , Yamashita N , Giesy J P , Zheng J , Fang Z ,Im S H , Lam P KS. Environ. Sci . Technol . , 2004 , 38 : 4056 —4062
[30] Boulanger B , Vargo J , Schnoor J L , Hornbuckle K C. Environ.Sci . Technol . , 2004 , 38 : 4064 —4070
[31] Kuklenyik Z , Reich J A , Tully J S , Needham L L , Calafat A M.Environ. Sci . Technol . , 2004 , 38 : 3698 —3704
[32] Kannan K, Franson J C , Bowerman W W, Hansen K J , Jones J D , Giesy J P. Environ. Sci . Technol . , 2001 , 35 : 3065 —3070
[33] Kannan K, Koistinen J , Beckmen K, Evans T , et al . Environ.Sci . Technol . , 2001 , 35 : 1593 —1598
[34] Giesy J P , Kannan K. Environ. Sci . Technol . , 2001 , 35 :1339 —1342
[35] Martin J W, Whittle D M, Muir D C G, Mabury S A. Environ.Sci . Technol . , 2004 , 38 : 5379 —5385
[36] Kannan K, Corsolini S , Falandysz J , Fillmann G, Kumar K S ,Loganathan B G, Mohd MA , Olivero J , Wouwe N V , Yang J H ,Aldous KM. Environ. Sci . Technol . , 2004 , 38 : 4489 —4495
[37] Masahiko T , Shigeki D , Takeotshi N. Rapid Commun. Mass Spectrom. , 2003 , 17 : 383 —390
[38] Martin J W, Smithwick M M, Braune B M, Hoekstra P F , Muir D C G, Mabury S A. Environ. Sci . Technol . , 2004 , 38 : 373 —380
[39] Martin J W, Muir D C G, Moody C A , Ellis D A , Kwan W C ,Solomon KR , Mabury S A. Anal . Chem. , 2002 , 74 (3) : 584 —590
[40] Kuehl D W, Rozynow B. Rapid Commun. Mass Spectrom. ,2003 , 17 : 2364 —2369
[41] Napoli M, Krotz L , Scipioni A. Rapid Commun. Mass Spectrom. , 1993 , 7 : 789 —794
[42] Hori H , Hayakawa E , Yamashita N , et al . Chemosphere , 2004 ,57 : 273 —282
[44] Hebert G N , Odom M A , Craig P S , et al . J . Environ. Monit . ,2002 , 4 : 90 —95

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