Chemical composition of the near-surface atmospheric aerosol in Barentsburg (Svalbard) based on the long-term observations

The chemical composition (ions, elements, polycyclic aromatic hydrocarbons) of aerosol and gaseous impurities (SO2, HNO3, HCl, NH3) in the surface layer of the atmosphere in Barentsburg, located on the Western Svalbard island (Svalbard archipelago), is analyzed. Atmospheric aerosol and gaseous impur...

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Published in:GEOGRAPHY, ENVIRONMENT, SUSTAINABILITY
Main Authors: L. Golobokova P., T. Khodzher V., D. Chernov G., O. Sidorova R., O. Khuriganova I., N. Onischuk A., N. Zhuchenko A., I. Marinaite I., Л. Голобокова П., Т. Ходжер В., Д. Чернов Г., О. Сидорова Р., О. Хуриганова И., Н. Онищук А., Н. Жученко А., И. Маринайте И.
Other Authors: The work was carried out within frameworks of the Fundamental researches complex program of the SB RAS II.1 (projects № 0345-2018-0002, 0368-2018-0014), of Russian Scientific Arctic expedition on Svalbard archipelago work program (RAE S), of Federal State budgetary Institution «AARI», subprogram 4 «Organization and support of work and research in the Arctic and Antarctic» of the state program of the Russian Federation «Environmental Protection» for 2012–2020. Analytical studies were carried out according to the project № 0345-2019-0008 on the basis of the instrumental center for collective use for physical-chemical ultramicroanalysis at Limnological Institute of the SB RAS. Authors thank to Mr. S.A. Turchionovich for participating in the measurements., Работа выполнялась в рамках Комплексной программы фундаментальных исследований СО РАН II.1 (проекты № 0345-2018-0002, 0368-2018-0014), программы работ Российской научной арктической экспедиции на архипелаге Шпицберген (РАЭ-Ш) ФГБУ «ААНИИ», подпрограммы 4 «Организация и обеспечение работ и научных исследований в Арктике и Антарктике» государственной программы Российской Федерации «Охрана окружающей среды» на 2012–2020 гг. Аналитические работы выполнены по проекту № 0345–2019–0008 в приборном центре коллективного пользования физикохимического ультрамикроанализа ЛИН СО РАН. Авторы выражают благодарность С.А. Турчиновичу за участие в измерениях.
Format: Article in Journal/Newspaper
Language:Russian
Published: IGRAS 2020
Subjects:
Online Access:https://ice-snow.igras.ru/jour/article/view/787
https://doi.org/10.31857/S2076673420010025
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Summary:The chemical composition (ions, elements, polycyclic aromatic hydrocarbons) of aerosol and gaseous impurities (SO2, HNO3, HCl, NH3) in the surface layer of the atmosphere in Barentsburg, located on the Western Svalbard island (Svalbard archipelago), is analyzed. Atmospheric aerosol and gaseous impurities brought to the Arctic from middle latitudes and deposited on snow and ice not only interact with various natural objects, but also spread to long distances with melting dirty snow and ice. Air sampling was carried out following to methodology adopted by the international networks of the atmospheric monitoring programs in South-East Asia (EANET) and Europe (EMEP). In 2011-2015, the observations of the chemical composition of the atmospheric ground layer were performed daily during the light season (April–September), and monthly from April 2016 to 2018. The largest total ion concentrations were observed in 2011–2012. Seasonal variability of ion concentrations in the aerosol was characterized by high values in the cold period (October–February) and low values in the warm one (May–June). High values of the coefficient of correlation between ions Na+ and Cl− (r = 0,93) as well as between Mg2+ and Cl− (r = 0,81) throughout the year show that the main source of the aerosol is the sea surface. The significant correlation between ions K+, NO3-, NH4+, SO42−, K+, SO42− in the polar night point to the influence of local sources: coal mining at the mine and its3 combustion at thermal power plants. Emission of polycyclic aromatic hydrocarbons and the gaseous impurities (SO2, HNO3) into the atmosphere, especially during the polar night, is also influenced by local sources. Among the elements the maximum enrichment of the aerosol was revealed for As, Cr, Zn, Mo, Cd, Sn, Sb, W, and Pb with a low content of Cd, Sn, Sb, W, and Pb in the coal, sludge and on the underlying surface. On the basis of the elemental composition of the aerosol and the back-trajectory analysis, it was shown that the air masses enriched in heavy metals come ...