Articles | Volume 14, issue 2
https://doi.org/10.5194/acp-14-783-2014
https://doi.org/10.5194/acp-14-783-2014
Research article
 | 
23 Jan 2014
Research article |  | 23 Jan 2014

Projections of atmospheric mercury levels and their effect on air quality in the United States

H. Lei, D. J. Wuebbles, X.-Z. Liang, Z. Tao, S. Olsen, R. Artz, X. Ren, and M. Cohen

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Revised manuscript not accepted
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Cited articles

Aiuppa, A., Bagnato, E., Witt, M. L. I., Mather, T. A., Parello, F., Pyle, D. M., and Martin, R. S.: Real-time simultaneous detection of volcanic Hg and SO2 at La Fossa Crater, Vulcano (Aeolian Islands, Sicily), Geophys. Res. Lett., 34, L21307, https://doi.org/10.1029/2007GL030762, 2007.
AMAP: AMAP Assessment 2011: Mercury in the Arctic. Arctic Monitoring and Assessment Programme (AMAP), Oslo, Norway, xiv + 193 pp., 2011.
Bullock, R. and Brehme, K.: Atmospheric mercury simulation using the CMAQ model: formulation description and analysis of wet deposition results, Atmos. Environ., 36, 2135–2146, https://doi.org/10.1016/s1352-2310(02)00220-0, 2002.
Chand, D., Jaffe, D., Prestbo, E., Swartzendruber, P. C., Hafner, W., Weiss-Penzias, P., Kato, S., Takami, A., Hatakeyama, S., and Kajii, Y.: Reactive and particulate mercury in the Asian marine boundary layer, Atmos. Environ., 42, 7988–7996, 2008.
Cohen, M., Artz, R., Draxler, R., Miller, P., Poissant, L., Niemi, D., Ratte, D., Deslauriers, M., Duval, R., Laurin, R., Slotnick, J., Nettesheim, T., and McDonald, J.: Modeling the Atmospheric Transport and Deposition of Mercury to the Great Lakes, Environ. Res., 95, 247–265, 2004.
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