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Speciation of Iodine in Environmental Water System
Corresponding Author(s) : Weina Zhang
Asian Journal of Chemistry,
Vol. 26 No. 9 (2014): Vol 26 Issue 9
Abstract
The speciation in environmental water system was selected as target in this paper. The contents of total iodine and its speciation in environmental water system including groundwater, tap water, pure water, lake water, rain water, snow water and sea water which used as comparison with surface water had been discussed. As the results revealed, the contents and speciation of iodine in different environmental water system were different from each other. The region of Changchun of China was a section of moderate iodine which judged by tap water, ground water and lake water. However and the existent speciation of iodine in these three waters were IO3– for tap water, I– for ground water with nearly both were 100 % and IO3–, I– and other perhaps organics species for lake water, rain water, snow water and sea water.
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- F. Delange, H. Burgi, Z.P. Chen and J.T. Dunn, Thyroid, 12, 915 (2002); doi:10.1089/105072502761016557.
- WHO, UNICEF, ICCIDD Assessment of Iodine Deficiency Disorders and Monitoring Their Elimination: A Guide for Programme Managers, World Health Organization, Geneva (2001).
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- P.R. Bhagat, R. Acharya, A.G.C. Nair, A.K. Pandey, N.S. Rajurkar and A.V.R. Reddy, Food Chem., 115, 706 (2009).
- P. Xu, J.M. Sun and H.W. Sun, Chin. Spectrosc. Spect. Anal., 23, 1203 (2003).
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- G.E. Batley, S.C. Apte and J.L. Stauber, Aust. J. Chem., 57, 903 (2004); doi:10.1071/CH04095.
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- Y. Liu and H.R. Gunten, Migration Chemistry and Behaviour of Iodine Relevent to Geological Disposal of Radioactive Wastes, A Literature Review with a Compilation of Sorption Data, PSI-16, Paul Scherrer Institute, Switzerland (1988).
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- G.T.F. Wong, Rev. Aquat. Sci., 45, 45 (1991).
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- C. Reifenhäuser and K.G. Heumann, Fresenius J. Anal. Chem., 336, 559 (1990); doi:10.1007/BF00331416.
- W.N. Zhang, H.T. Chen, X.J. Xie and J.L. Lu, J. Jilin Normal Univ. (Nat. Sci. Ed.), 31, 6 (2010).
- W.N. Zhang, X.Q. Liu, X.Y. Jia, Y. Han, X.L. Liu, X.J. Xie, J.L. Lu, T.C. Duan and H.T. Chen, Chromatographia, 72, 1009 (2010); doi:10.1365/s10337-010-1756-x.
- B.S. Gilfedder, M. Petri and H. Biester, J. Geophys. Res., 112, D07301 (2007); doi:10.1029/2006JD007356.
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- D.Z. Dan and P. Li, J. Mineral Petrol, 14, 69 (1994).
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References
F. Delange, H. Burgi, Z.P. Chen and J.T. Dunn, Thyroid, 12, 915 (2002); doi:10.1089/105072502761016557.
WHO, UNICEF, ICCIDD Assessment of Iodine Deficiency Disorders and Monitoring Their Elimination: A Guide for Programme Managers, World Health Organization, Geneva (2001).
M. Dermelj, Z. Slejkovec, A.R. Byrne, P. Stegnar, V. Stibilj and M. Rossbach, Fresenius J. Anal. Chem., 338, 559 (1990); doi:10.1007/BF00322538.
R.R. Rao and A. Chatt, Anal. Chem., 63, 1298 (1991); doi:10.1021/ac00013a022.
T. Shinonaga, M.H. Gerzabek, F. Strebl and Y. Muramatsu, Sci. Total Environ., 267, 33 (2001); doi:10.1016/S0048-9697(00)00764-6.
P.R. Bhagat, R. Acharya, A.G.C. Nair, A.K. Pandey, N.S. Rajurkar and A.V.R. Reddy, Food Chem., 115, 706 (2009).
P. Xu, J.M. Sun and H.W. Sun, Chin. Spectrosc. Spect. Anal., 23, 1203 (2003).
I. Lamy, S. Bourgeois and A. Bermond, J. Environ. Qual., 22, 731 (1993); doi:10.2134/jeq1993.00472425002200040014x.
G.E. Batley, S.C. Apte and J.L. Stauber, Aust. J. Chem., 57, 903 (2004); doi:10.1071/CH04095.
Y.H. Zhao, R.Q. Huang, K.Y. Li, B.K. Xiao and J.Y. Yang, Med. Instrum., 3, 1 (2009).
K.A. Schwehr and P.H. Santschi, Anal. Chim. Acta, 482, 59 (2003); doi:10.1016/S0003-2670(03)00197-1.
Y. Liu and H.R. Gunten, Migration Chemistry and Behaviour of Iodine Relevent to Geological Disposal of Radioactive Wastes, A Literature Review with a Compilation of Sorption Data, PSI-16, Paul Scherrer Institute, Switzerland (1988).
R. Michel, K. Klipsch, Th. Ernst, M. Gorny, D. Jakob, J. Vahlbruch, H.-A. Synal and C. Schnabel, Ableitung von radioökologischen Parametern aus dem langfristigen Eintrag von Iod-129 (in German) Abschlussbericht zum Forschungsvorhaben StSch 4285, August 2004, in: Schriftenreihe Reaktorsicherheit und Strahlenschutz, BMU-2004-650, ISSN 1612-6386, http://www.bmu.de/strahlenschutz/doc6872.php und; www.zsr.unihannover.de.
G.T.F. Wong, Rev. Aquat. Sci., 45, 45 (1991).
P. Vaattovaara, P.E. Huttunen, Y.J. Yoon, J. Joutsensaari, K.E.J. Lehtinen, C.D. O’Dowd and A. Laaksonen, Atmos. Chem. Phys., 6, 4601 (2006); doi:10.5194/acp-6-4601-2006.
C. Reifenhäuser and K.G. Heumann, Fresenius J. Anal. Chem., 336, 559 (1990); doi:10.1007/BF00331416.
W.N. Zhang, H.T. Chen, X.J. Xie and J.L. Lu, J. Jilin Normal Univ. (Nat. Sci. Ed.), 31, 6 (2010).
W.N. Zhang, X.Q. Liu, X.Y. Jia, Y. Han, X.L. Liu, X.J. Xie, J.L. Lu, T.C. Duan and H.T. Chen, Chromatographia, 72, 1009 (2010); doi:10.1365/s10337-010-1756-x.
B.S. Gilfedder, M. Petri and H. Biester, J. Geophys. Res., 112, D07301 (2007); doi:10.1029/2006JD007356.
B.S. Gilfedder, M. Petri and H. Biester, Atmos. Chem. Phys., 7, 2661 (2007); doi:10.5194/acp-7-2661-2007.
D.Z. Dan and P. Li, J. Mineral Petrol, 14, 69 (1994).
Z.P. Chen, D.R. Liu and Y.K. Yang, Chin. J. Endemiology, 17, 385 (1998).