The role of the global cryosphere in the fate of organic contaminants
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Published:2013-03-20
Issue:6
Volume:13
Page:3271-3305
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ISSN:1680-7324
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Container-title:Atmospheric Chemistry and Physics
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language:en
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Short-container-title:Atmos. Chem. Phys.
Author:
Grannas A. M., Bogdal C., Hageman K. J., Halsall C., Harner T., Hung H., Kallenborn R.ORCID, Klán P., Klánová J., Macdonald R. W.ORCID, Meyer T., Wania F.
Abstract
Abstract. The cryosphere is an important component of global organic contaminant cycles. Snow is an efficient scavenger of atmospheric organic pollutants while a seasonal snowpack, sea ice, glaciers and ice caps are contaminant reservoirs on time scales ranging from days to millennia. Important physical and chemical processes occurring in the various cryospheric compartments impact contaminant cycling and fate. A variety of interactions and feedbacks also occur within the cryospheric system, most of which are susceptible to perturbations due to climate change. In this article, we review the current state of knowledge regarding the transport and processing of organic contaminants in the global cryosphere with an emphasis on the role of a changing climate. Given the complexity of contaminant interactions with the cryosphere and limitations on resources and research capacity, interdisciplinary research and extended collaborations are essential to close identified knowledge gaps and to improve our understanding of contaminant fate under a changing climate.
Publisher
Copernicus GmbH
Subject
Atmospheric Science
Reference264 articles.
1. Åberg, A., MacLeod, M., and Wiberg, K.: Physical-chemical property data for dibenzo-p-dioxin (DD), dibenzofuran (DF), and chlorinated DD/Fs: A critical review and recommended values, J. Phys. Chem. Ref. Data, 37, 1997, 2008. 2. Abbatt, J. P. D., Thomas, J. L., Abrahamsson, K., Boxe, C., Granfors, A., Jones, A. E., King, M. D., Saiz-Lopez, A., Shepson, P. B., Sodeau, J., Toohey, D. W., Toubin, C., von Glasow, R., Wren, S. N., and Yang, X.: Halogen activation via interactions with environmental ice and snow in the polar lower troposphere and other regions, Atmos. Chem. Phys., 12, 6237–6271, https://doi.org/10.5194/acp-12-6237-2012, 2012. 3. ACCE: Antarctic Climate Change and the Environment, edited by: Turner, J., Bindschadler, R. A., Convey, P., Di Prisco, G., Fahrbach, E., Gutt, J., Hodgson, D. A., Mayewski, P. A., and Summerhayes, C. P., Scientific Committee on Antarctic Research, Cambridge, 526 pp., 2009. 4. ACIA, Arctic Climate Impact Assessment, Cambridge University Press 2005, 1042 pp., 2005. 5. Albert, M. R. and Hawley, R. L.: Seasonal changes in snow surface roughness characteristics at Summit, Greenland: implications for snow and firn ventilation, Ann. Glaciol., 35, 510–514, 2002.
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