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FATE OF MERCURY IN THE ARCTIC Michael Evan ... - COGCI

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Fate of Mercury in the Arctic 125<br />

62. Roos-Barraclough F; Givelet N; Martinez-Cortizas A; Goodsite M E; Biester H; Shotyk W.,<br />

(2002): An analytical protocol for the determination of total mercury concentrations in solid<br />

peat samples. Science of the Total Environment, 292(1-2), 129-39.<br />

63. Salvato N, Pirola C., (1996): Analysis of mercury traces by means of solid samples atomic<br />

absorption spectrometry, Microchimica Acta, 123(1–4):63 –71.<br />

64. Schroeder, W. H. and Munthe, J. (1998): Atmospheric Mercury - An Overview.<br />

Atmospheric Environment 32, 809-822.<br />

65. Schroeder, W. H., Anlauf, K. G., Barrie, L.A., Lu, J.Y. and Steffen, A. (1998): Arctic<br />

springtime depletion of mercury. Nature 394, 331-332.<br />

66. Schroeder, W. H., Steffen, A., Scott, K., Bender, T., Prestbo, E., Ebinghaus, R., Lu J. Y.,<br />

and Lindberg, S. E., (2003): Summary report: first international Arctic atmospheric mercury<br />

research workshop, Atmospheric Environment, Volume 37, Issue 18, Pages 2551-2555.<br />

67. Schuster, P.F., Krabbenhoft, D.P., Naftz, D.L., Cecil, L.D., Olson, M.L., Dewild, J.F.,<br />

Susong, D.D., Green, J.R. and Abbott, M.L., (2002): Atmospheric Mercury Deposition<br />

during the Last 270 Years: A Glacial Ice Core Record of Natural and Anthropogenic<br />

Sources. Environmental Science and Technology 36 (11), 2303 -2310.<br />

68. Seigneur, C., Karamchandani, P., Lohman, K., Vijayaraghavan, K. and Shia, R-L. (2001):<br />

Multiscale modeling of the atmospheric fate and transport of mercury. Journal of<br />

Geophysical Research 106 (D21), 27795-27809.<br />

69. Sheu, G.P., and Mason, R.P., (2001): An Examination of Methods for the Measurements of<br />

Reactive Gaseous Mercury in the Atmosphere. Environmental Science and Technology, 35<br />

(6), 1209 -1216.<br />

70. Shotyk, W., Goodsite, M.E., Roos-Barraclough, F., Frei, R., Heinemeier, J., Asmund, G.,<br />

Lohse, C., Hansen, T.S., (in-press): Anthropogenic contributions to atmospheric Hg, Pb and<br />

As accumulation recorded by peat cores from southern Greenland and Denmark dated using<br />

the 14C “bomb pulse curve”. Geochimica et Cosmochimica Acta accepted 02 June, 2003.<br />

71. Shotyk, W., Goodsite, M.E., Roos-Barraclough, F., Givelet, N., LeRoux, G., Weiss, D.,<br />

Norton, S., Knudsen, K., and Lohse, C., (2003): Unpublished data. Manuscript in<br />

preparation “Atmospheric Mercury and Lead Accumulation Since 5420 14 C yr BP at<br />

Myrarnar, Faroe Islands”<br />

72. Skov, H. (2001) Transport of atmospheric mercury from mid-latitudes to the Arctic A model<br />

and Measurements study. In: EUROTRAC-2 MEPOP Atmospheric cycling of mercury and<br />

persistent organic pollutants subproject description. International Scientific Secretariat GSF-<br />

Forschungszentrum für Umwelt and Gesundheit GmbH; Munich, Germany.<br />

73. Skov, H. Nielsdóttir, M.C. Goodsite, M.E. Christensen, J. Skjøth, C.A. Geernaert, G. Hertel,<br />

O. Olsen, J. (2003 1 ) “Measurements and modelling of gaseous elemental mercury on the<br />

Faroe Islands”. Accepted. Asian Chemistry Letters.<br />

74. Skov, H., Christensen, J., Goodsite, M.E., Heidam, N.Z., Jensen, B., Wåhlin, P., Geernaert,<br />

G. The Fate of Elemental Mercury in Arctic during Atmospheric Mercury Depletion<br />

Episodes and the Load of Atmospheric Mercury to Arctic. Submitted to Environmental<br />

Science and Technology, June 2003.<br />

75. Slemr, F., Schuster, G. and Seiler, W., (1985): Distribution, speciation and budget of<br />

atmospheric mercury. Journal of Atmospheric Chemistry 3, pp. 407–434.

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