Measurement report: The chemical composition of and temporal variability in aerosol particles at Tuktoyaktuk, Canada, during the Year of Polar Prediction Second Special Observing Period
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Published:2021-09-24
Issue:18
Volume:21
Page:14199-14213
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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:
MacInnis John, Chaubey Jai Prakash, Weagle Crystal, Atkinson David, Chang Rachel Ying-WenORCID
Abstract
Abstract. The chemical composition, sources, and concentrations of
aerosol particles vary on a seasonal basis in the Arctic. While existing
research has focused on understanding the occurrence of aerosol particles
during the Arctic winter and spring, less is known of their occurrence
during the Arctic summer. In this study, atmospheric aerosol particle
chemical composition and concentration were determined during July–September
2018 at Tuktoyaktuk, NT, Canada (69.4∘ N, 133.0∘ W), to
coincide with the Year of Polar Prediction's Second Special Observing
Period in the Arctic. The chemical composition of fine (PM2.5) and
coarse (PM10–2.5) aerosol filter samples suggests the ocean,
mineral and/or road dust, and combustion were sources of the sampled aerosol
particles. Mass concentrations of PM2 and PM10, estimated from
optical particle counter measurements, remained within a similar range
during the study. However, elevated mass concentrations coincided
with a festival in the community of Tuktoyaktuk, suggesting local human
activity was an important source of aerosol particles. Mass concentrations
of PM2, which promote negative health effects in humans, were
significantly lower at Tuktoyaktuk than the national air quality standard
recommended by the government of Canada. These measurements provide an
important baseline to compare with future measurements associated with the
assessment of aerosol chemistry and air quality in the Arctic.
Funder
Polar Knowledge Canada Canada Research Chairs
Publisher
Copernicus GmbH
Subject
Atmospheric Science
Reference68 articles.
1. Abbatt, J. P. D., Leaitch, W. R., Aliabadi, A. A., Bertram, A. K., Blanchet, J.-P., Boivin-Rioux, A., Bozem, H., Burkart, J., Chang, R. Y. W., Charette, J., Chaubey, J. P., Christensen, R. J., Cirisan, A., Collins, D. B., Croft, B., Dionne, J., Evans, G. J., Fletcher, C. G., Galí, M., Ghahremaninezhad, R., Girard, E., Gong, W., Gosselin, M., Gourdal, M., Hanna, S. J., Hayashida, H., Herber, A. B., Hesaraki, S., Hoor, P., Huang, L., Hussherr, R., Irish, V. E., Keita, S. A., Kodros, J. K., Köllner, F., Kolonjari, F., Kunkel, D., Ladino, L. A., Law, K., Levasseur, M., Libois, Q., Liggio, J., Lizotte, M., Macdonald, K. M., Mahmood, R., Martin, R. V., Mason, R. H., Miller, L. A., Moravek, A., Mortenson, E., Mungall, E. L., Murphy, J. G., Namazi, M., Norman, A.-L., O'Neill, N. T., Pierce, J. R., Russell, L. M., Schneider, J., Schulz, H., Sharma, S., Si, M., Staebler, R. M., Steiner, N. S., Thomas, J. L., von Salzen, K., Wentzell, J. J. B., Willis, M. D., Wentworth, G. R., Xu, J.-W., and Yakobi-Hancock, J. D.: Overview paper: New insights into aerosol and climate in the Arctic, Atmos. Chem. Phys., 19, 2527–2560, https://doi.org/10.5194/acp-19-2527-2019, 2019. 2. Alaska Miners Association: Major Mines in Alaska, available at: http://www.alaskaminers.org/major-mines (last access: 16 March 2021), 2020. 3. Bari, M. A. and Kindzierski, W. B.: Ambient fine particulate matter
(PM2.5) in Canadian oil sands communities: Levels, sources and
potential human health risk, Sci. Total Environ., 595, 828–838,
https://doi.org/10.1016/j.scitotenv.2017.04.023, 2017. 4. Bates, T. S., Charlson, R. J., and Gammon, R. H.: Evidence for the climatic
role of marine biogenic sulphur, Nature, 329, 319–321,
https://doi.org/10.1038/329319a0, 1987. 5. Boy, M., Thomson, E. S., Acosta Navarro, J.-C., Arnalds, O., Batchvarova, E., Bäck, J., Berninger, F., Bilde, M., Brasseur, Z., Dagsson-Waldhauserova, P., Castarède, D., Dalirian, M., de Leeuw, G., Dragosics, M., Duplissy, E.-M., Duplissy, J., Ekman, A. M. L., Fang, K., Gallet, J.-C., Glasius, M., Gryning, S.-E., Grythe, H., Hansson, H.-C., Hansson, M., Isaksson, E., Iversen, T., Jonsdottir, I., Kasurinen, V., Kirkevåg, A., Korhola, A., Krejci, R., Kristjansson, J. E., Lappalainen, H. K., Lauri, A., Leppäranta, M., Lihavainen, H., Makkonen, R., Massling, A., Meinander, O., Nilsson, E. D., Olafsson, H., Pettersson, J. B. C., Prisle, N. L., Riipinen, I., Roldin, P., Ruppel, M., Salter, M., Sand, M., Seland, Ø., Seppä, H., Skov, H., Soares, J., Stohl, A., Ström, J., Svensson, J., Swietlicki, E., Tabakova, K., Thorsteinsson, T., Virkkula, A., Weyhenmeyer, G. A., Wu, Y., Zieger, P., and Kulmala, M.: Interactions between the atmosphere, cryosphere, and ecosystems at northern high latitudes, Atmos. Chem. Phys., 19, 2015–2061, https://doi.org/10.5194/acp-19-2015-2019, 2019.
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