16-year simulation of Arctic black carbon: Transport, source contribution, and sensitivity analysis on deposition

Author:

Sharma S.1,Ishizawa M.2,Chan D.1,Lavoué D.3,Andrews E.4,Eleftheriadis K.5,Maksyutov S.6

Affiliation:

1. Climate Research Division, S&T Branch; Environment Canada; Toronto Ontario Canada

2. Toronto Ontario Canada

3. DL Modelling and Research; Brampton Ontario Canada

4. CIRES; University of Colorado; Boulder Colorado USA

5. ERL, Demokritos National Center of Scientific Research; Institute of Nuclear Technology and Radiation Protection; Attiki Greece

6. Center for Global Environmental Research National Institute for Environmental Studies 16-2 Onogawa; Tsukuba Ibaraki Japan

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Atmospheric Science,Geophysics

Reference84 articles.

1. Towards aerosol light-absorption measurements with a 7-wavelength aethalometer: Evaluation with a photoacoustic instrument and 3-wavelength nephelometer;Arnott;Aero. Sci. and Tech.,2005

2. Baron , R. E. W. D. Montgomery S. D. Tuladhar 2009 An Analysis of Black Carbon Mitigation as a Response to Climate Change

3. Arctic air pollution: an overview of current knowledge;Barrie;Atmos. Environ.,1986

4. The local wind field at Ny-Alesund and the Zeppelin mountain at Svalbard;Beine;Meteorol. Atmos. Phys.,2001

5. Barrow surface aerosol: 1976-1986;Bodhaine;Atmos. Env.,1989

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