International Journal of Marine Science, 2017, Vol.7, No.26, 260-271
271
Ullrich S.M., Tanton T.W., and Abdrashitova S.A., 2001, Mercury in the aquatic environment: A review of factors affecting methylation, Critical Reviews in
Environmental Science and Technology, 31(3): 241–293
USEPA, 2001, Appendix to method 1631, Total mercury in tissue, sludge, sediment and soil by acid digestion and BrCl oxidation, United States Environmental
Protection Agency
Walker G.A., 2007, A world melting from the top to down, Nature, 446: 718-721
PMid:17429371
Wallschlager D., Desai M.V.M., Spengler M., Windmoler C.C., and Wilken R.D., 1998, Mercury speciation in floodplain soils and sediments along a
contaminated river transect, Journal of Environmental Quality, 27: 1034–1044
Wang Q., Kim D., Dionysiou D.D., Sorial G.A. and Timberlake D., 2004, Sources and remediation for mercury contamination in aquatic systems – a literature
review, Environmental Pollution, 131: 323 -336
PMid:15234099
Xia K., Skyllberg U.L., Bleam W.F., Bloom R.P., Nater E.A., and Helmke P.A., 1999, X-ray absorption spectroscopic evidence for the complexation of Hg(II)
by reduced sulfur in soil humic substances, Environmental Science and Technology, 33: 257–261
Xie Z.Q., Sander R., Pöschl U., and Slemr F., 2008, Simulation of atmospheric mercury depletion events (AMDEs) during polar springtime using the MECCA
box model, Atmospheric Chemistry and Physics, 8(23): 7165-7180