Simultaneous Determination of Methylmercury and Ethylmercury in Natural Waters using Propylation-Headspace-GC/MS
Author:
Affiliation:
1. Niigata Prefectural Institute of Public Health and Environmental Sciences
Publisher
Japan Society for Environmental Chemistry
Subject
General Earth and Planetary Sciences,General Environmental Science
Link
https://www.jstage.jst.go.jp/article/jec/29/4/29_175/_pdf
Reference18 articles.
1. 4) Faganeli, J., Horvat, M., Covelli, S., Fajon, V., Logar, M., Lipej, L. and Cermelj, B.: Mercury and methylmercury in the Gulf of Trieste (northern Adriatic Sea). Sci. Total Environ., 304, 315-326 (2003)
2. 5) Horvat, M., Kotnik, J., Logar, M., Fajon, V., Zvonaric, T., and Pirrone, N.: Speciation of mercury in surface and deep-sea waters in the Mediterranean Sea. Atmos. Environ., 37, Supplement No.1, S93-S108 (2003)
3. 6) Sunderland, E.M., Krabbenhoft, D.P., Moreau, J.W., Strode, S.A. and Landing, W.M.: Mercury sources, distribution, and bioavailability in the North Pacific Ocean: insights from data and models. Global Biochemical Cycles, 23, GB2010,doi:10.1029/2008GB003425 (2009)
4. 7) Kuss, J., Cordes, F., Mohrholz, V., Nausch, G., Naumann, M., Kruger, S. and Schulz-Bull, D. E.: The impact of the major Baltic inflow of December 2014 on the mercury species distribution in the Baltic Sea. Environ. Sci. Technol., 51, 11692-11700 (2017)
5. 8) Chetelat, J., Richardson, M.C., MacMillan, G.A., Amyot, M. and Poulain, A.J.: Ratio of methylmercury to dissolved organic carbon in water explains methylmercury bioaccumulation across a latitudinal gradient from north-temperate to Arctic Lakes. Environ. Sci. Technol., 52, 79-88 (2018)
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