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A multi-model assessment of pollution transport to the Arctic

Publication ,  Journal Article
Shindell, DT; Chin, M; Dentener, F; Doherty, RM; Faluvegi, G; Fiore, AM; Hess, P; Koch, DM; MacKenzie, IA; Sanderson, MG; Schultz, MG; Wild, O ...
Published in: Atmospheric Chemistry and Physics
September 2, 2008

We examine the response of Arctic gas and aerosol concentrations to perturbations in pollutant emissions from Europe, East and South Asia, and North America using results from a coordinated model intercomparison. These sensitivities to regional emissions (mixing ratio change per unit emission) vary widely across models and species. Intermodel differences are systematic, however, so that the relative importance of different regions is robust. North America contributes the most to Arctic ozone pollution. For aerosols and CO, European emissions dominate at the Arctic surface but East Asian emissions become progressively more important with altitude, and are dominant in the upper troposphere. Sensitivities show strong seasonality: surface sensitivities typically maximize during boreal winter for European and during spring for East Asian and North American emissions. Mid-tropospheric sensitivities, however, nearly always maximize during spring or summer for all regions. Deposition of black carbon (BC) onto Greenland is most sensitive to North American emissions. North America and Europe each contribute ∼40% of total BC deposition to Greenland, with ∼20% from East Asia. Elsewhere in the Arctic, both sensitivity and total BC deposition are dominated by European emissions. Model diversity for aerosols is especially large, resulting primarily from differences in aerosol physical and chemical processing (including removal). Comparison of modeled aerosol concentrations with observations indicates problems in the models, and perhaps, interpretation of the measurements. For gas phase pollutants such as CO and O3, which are relatively well-simulated, the processes contributing most to uncertainties depend on the source region and altitude examined. Uncertainties in the Arctic surface CO response to emissions perturbations are dominated by emissions for East Asian sources, while uncertainties in transport, emissions, and oxidation are comparable for European and North American sources. At higher levels, model-to-model variations in transport and oxidation are most important. Differences in photochemistry appear to play the largest role in the intermodel variations in Arctic ozone sensitivity, though transport also contributes substantially in the mid-troposphere.

Duke Scholars

Published In

Atmospheric Chemistry and Physics

DOI

EISSN

1680-7324

ISSN

1680-7316

Publication Date

September 2, 2008

Volume

8

Issue

17

Start / End Page

5353 / 5372

Related Subject Headings

  • Meteorology & Atmospheric Sciences
  • 3702 Climate change science
  • 3701 Atmospheric sciences
  • 0401 Atmospheric Sciences
  • 0201 Astronomical and Space Sciences
 

Citation

APA
Chicago
ICMJE
MLA
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Shindell, D. T., Chin, M., Dentener, F., Doherty, R. M., Faluvegi, G., Fiore, A. M., … Zuber, A. (2008). A multi-model assessment of pollution transport to the Arctic. Atmospheric Chemistry and Physics, 8(17), 5353–5372. https://doi.org/10.5194/acp-8-5353-2008
Shindell, D. T., M. Chin, F. Dentener, R. M. Doherty, G. Faluvegi, A. M. Fiore, P. Hess, et al. “A multi-model assessment of pollution transport to the Arctic.” Atmospheric Chemistry and Physics 8, no. 17 (September 2, 2008): 5353–72. https://doi.org/10.5194/acp-8-5353-2008.
Shindell DT, Chin M, Dentener F, Doherty RM, Faluvegi G, Fiore AM, et al. A multi-model assessment of pollution transport to the Arctic. Atmospheric Chemistry and Physics. 2008 Sep 2;8(17):5353–72.
Shindell, D. T., et al. “A multi-model assessment of pollution transport to the Arctic.” Atmospheric Chemistry and Physics, vol. 8, no. 17, Sept. 2008, pp. 5353–72. Scopus, doi:10.5194/acp-8-5353-2008.
Shindell DT, Chin M, Dentener F, Doherty RM, Faluvegi G, Fiore AM, Hess P, Koch DM, MacKenzie IA, Sanderson MG, Schultz MG, Schulz M, Stevenson DS, Teich H, Textor C, Wild O, Bergmann DJ, Bey I, Bian H, Cuvelier C, Duncan BN, Folberth G, Horowitz LW, Jonson J, Kaminski JW, Marmer E, Park R, Pringle KJ, Schroeder S, Szopa S, Takemura T, Zeng G, Keating TJ, Zuber A. A multi-model assessment of pollution transport to the Arctic. Atmospheric Chemistry and Physics. 2008 Sep 2;8(17):5353–5372.

Published In

Atmospheric Chemistry and Physics

DOI

EISSN

1680-7324

ISSN

1680-7316

Publication Date

September 2, 2008

Volume

8

Issue

17

Start / End Page

5353 / 5372

Related Subject Headings

  • Meteorology & Atmospheric Sciences
  • 3702 Climate change science
  • 3701 Atmospheric sciences
  • 0401 Atmospheric Sciences
  • 0201 Astronomical and Space Sciences