Articles | Volume 25, issue 2
https://doi.org/10.5194/acp-25-1145-2025
https://doi.org/10.5194/acp-25-1145-2025
Research article
 | 
28 Jan 2025
Research article |  | 28 Jan 2025

Multiple eco-regions contribute to the seasonal cycle of Antarctic aerosol size distributions

James Brean, David C. S. Beddows, Eija Asmi, Aki Virkkula, Lauriane L. J. Quéléver, Mikko Sipilä, Floortje Van Den Heuvel, Thomas Lachlan-Cope, Anna Jones, Markus Frey, Angelo Lupi, Jiyeon Park, Young Jun Yoon, Rolf Weller, Giselle L. Marincovich, Gabriela C. Mulena, Roy M. Harrison, and Manuel Dall'Osto

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Cited articles

Amsler C. D., Amsler, K., Iken, J. B., McClintock, M. O., Amsler, K. J., Peters, J. M., Hubbard, F. B., and Furrow, B. J.: Baker Comprehensive evaluation of the palatability and chemical defenses of subtidal macroalgae from the Antarctic Peninsula, Mar. Ecol. Prog. Ser., 294, 141–159, 2005. 
Arrigo, K. R., Lizotte, M. P., and Mock, T.: Primary producers and sea ice, Science, 276, 394–397, https://doi.org/10.1126/science.276.5311.394, 2009. 
Arrigo, K. R., van Dijken, G. L., and Strong, A. L.: Environmental controls of marine productivity hot spots around Antarctica, J. Geophys Res.-Oceans, 120, 5545–5565, 2015. 
Asmi, E., Frey, A., Virkkula, A., Ehn, M., Manninen, H. E., Timonen, H., Tolonen-Kivimäki, O., Aurela, M., Hillamo, R., and Kulmala, M.: Hygroscopicity and chemical composition of Antarctic sub-micrometre aerosol particles and observations of new particle formation, Atmos. Chem. Phys., 10, 4253–4271, https://doi.org/10.5194/acp-10-4253-2010, 2010. 
Atkinson, H. M., Huang, R.-J., Chance, R., Roscoe, H. K., Hughes, C., Davison, B., Schönhardt, A., Mahajan, A. S., Saiz-Lopez, A., Hoffmann, T., and Liss, P. S.: Iodine emissions from the sea ice of the Weddell Sea, Atmos. Chem. Phys., 12, 11229–11244, https://doi.org/10.5194/acp-12-11229-2012, 2012. 
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Our results emphasise how understanding the geographical variation in surface types across the Antarctic is key to understanding secondary aerosol sources.
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