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Atmos. Chem. Phys. Discuss., 8, 19861-19890, 2008
www.atmos-chem-phys-discuss.net/8/19861/2008/
doi:10.5194/acpd-8-19861-2008
© Author(s) 2008. This work is distributed
under the Creative Commons Attribution 3.0 License.


Estimates of mercury flux into the United States from non-local and global sources: results from a 3-D CTM simulation

B. A. Drewniak1, V. R. Kotamarthi1, D. Streets2, M. Kim3, and K. Crist3
1Environmental Science Division, Argonne National Laboratory, Argonne, IL, USA
2Decision and Information Sciences Division, Argonne National Laboratory, Argonne, IL, USA
3Department of Chemical Engineering, Ohio University, Athens, OH, USA

Abstract. The sensitivity of Hg concentration and deposition in the United States to emissions in China was investigated by using a global chemical transport model: Model for Ozone and Related Chemical Tracers (MOZART). Two forms of gaseous Hg were included in the model: elemental Hg (HG(0) and oxidized or reactive Hg (HGO). We simulated three different emission scenarios to evaluate the model's sensitivity. One scenario included no emissions from China, while the others were based on different estimates of Hg emissions in China. The results indicated, in general, that when Hg emissions were included, HG(0) concentrations increased both locally and globally. Increases in Hg concentrations in the United States were greatest during spring and summer, by as much as 7%. Ratios of calculated concentrations of Hg and CO near the source region in eastern Asia agreed well with ratios based on measurements. Increases similar to those observed for HG(0) were also calculated for deposition of HGO. Calculated increases in wet and dry deposition in the United States were 5–7% and 5–9%, respectively. The results indicate that long-range transcontinental transport of Hg has a non-negligible impact on Hg deposition levels in the United States.

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Citation: Drewniak, B. A., Kotamarthi, V. R., Streets, D., Kim, M., and Crist, K.: Estimates of mercury flux into the United States from non-local and global sources: results from a 3-D CTM simulation, Atmos. Chem. Phys. Discuss., 8, 19861-19890, doi:10.5194/acpd-8-19861-2008, 2008.   Bibtex   EndNote   Reference Manager    XML