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Surface Ozone Concentration in Russia in the Second Half of 2020

We present information on ozone concentration in the surface air layer in the second half of 2020. Data were obtained at 13 stations located in different regions of Russia. We estimated the excess over hygienic standards of the Russian Federation, both in the second half of the year and throughout 2...

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Autores principales: Andreev, V. V., Arshinov, M. Yu., Belan, B. D., Belan, S. B., Davydov, D. K., Demin, V. I., Elansky, N. F., Zhamsueva, G. S., Zayakhanov, A. S., Ivlev, G. A., Kozlov, A. V., Kotel’nikov, S. N., Kuznetsova, I. N., Lapchenko, V. A., Lezina, E. A., Postylyakov, O. V., Savkin, D. E., Senik, I. A., Stepanov, E. V., Tolmachev, G. N., Fofonov, A. V., Chelibanov, I. V., Chelibanov, V. P., Shirotov, V. V., Shukurov, K. A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pleiades Publishing 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8410021/
http://dx.doi.org/10.1134/S1024856021040035
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author Andreev, V. V.
Arshinov, M. Yu.
Belan, B. D.
Belan, S. B.
Davydov, D. K.
Demin, V. I.
Elansky, N. F.
Zhamsueva, G. S.
Zayakhanov, A. S.
Ivlev, G. A.
Kozlov, A. V.
Kotel’nikov, S. N.
Kuznetsova, I. N.
Lapchenko, V. A.
Lezina, E. A.
Postylyakov, O. V.
Savkin, D. E.
Senik, I. A.
Stepanov, E. V.
Tolmachev, G. N.
Fofonov, A. V.
Chelibanov, I. V.
Chelibanov, V. P.
Shirotov, V. V.
Shukurov, K. A.
author_facet Andreev, V. V.
Arshinov, M. Yu.
Belan, B. D.
Belan, S. B.
Davydov, D. K.
Demin, V. I.
Elansky, N. F.
Zhamsueva, G. S.
Zayakhanov, A. S.
Ivlev, G. A.
Kozlov, A. V.
Kotel’nikov, S. N.
Kuznetsova, I. N.
Lapchenko, V. A.
Lezina, E. A.
Postylyakov, O. V.
Savkin, D. E.
Senik, I. A.
Stepanov, E. V.
Tolmachev, G. N.
Fofonov, A. V.
Chelibanov, I. V.
Chelibanov, V. P.
Shirotov, V. V.
Shukurov, K. A.
author_sort Andreev, V. V.
collection PubMed
description We present information on ozone concentration in the surface air layer in the second half of 2020. Data were obtained at 13 stations located in different regions of Russia. We estimated the excess over hygienic standards of the Russian Federation, both in the second half of the year and throughout 2020. It is shown that the daily average maximum permissible concentration of ozone is regularly exceeded at all stations. There are cases of exceeding the one-time maximum permissible concentration.
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spelling pubmed-84100212021-09-02 Surface Ozone Concentration in Russia in the Second Half of 2020 Andreev, V. V. Arshinov, M. Yu. Belan, B. D. Belan, S. B. Davydov, D. K. Demin, V. I. Elansky, N. F. Zhamsueva, G. S. Zayakhanov, A. S. Ivlev, G. A. Kozlov, A. V. Kotel’nikov, S. N. Kuznetsova, I. N. Lapchenko, V. A. Lezina, E. A. Postylyakov, O. V. Savkin, D. E. Senik, I. A. Stepanov, E. V. Tolmachev, G. N. Fofonov, A. V. Chelibanov, I. V. Chelibanov, V. P. Shirotov, V. V. Shukurov, K. A. Atmos Ocean Opt Optical Models and Databases We present information on ozone concentration in the surface air layer in the second half of 2020. Data were obtained at 13 stations located in different regions of Russia. We estimated the excess over hygienic standards of the Russian Federation, both in the second half of the year and throughout 2020. It is shown that the daily average maximum permissible concentration of ozone is regularly exceeded at all stations. There are cases of exceeding the one-time maximum permissible concentration. Pleiades Publishing 2021-09-01 2021 /pmc/articles/PMC8410021/ http://dx.doi.org/10.1134/S1024856021040035 Text en © Pleiades Publishing, Ltd. 2021, ISSN 1024-8560, Atmospheric and Oceanic Optics, 2021, Vol. 34, No. 4, pp. 347–356. © Pleiades Publishing, Ltd., 2021.Russian Text © The Author(s), 2021, published in Optika Atmosfery i Okeana. This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Optical Models and Databases
Andreev, V. V.
Arshinov, M. Yu.
Belan, B. D.
Belan, S. B.
Davydov, D. K.
Demin, V. I.
Elansky, N. F.
Zhamsueva, G. S.
Zayakhanov, A. S.
Ivlev, G. A.
Kozlov, A. V.
Kotel’nikov, S. N.
Kuznetsova, I. N.
Lapchenko, V. A.
Lezina, E. A.
Postylyakov, O. V.
Savkin, D. E.
Senik, I. A.
Stepanov, E. V.
Tolmachev, G. N.
Fofonov, A. V.
Chelibanov, I. V.
Chelibanov, V. P.
Shirotov, V. V.
Shukurov, K. A.
Surface Ozone Concentration in Russia in the Second Half of 2020
title Surface Ozone Concentration in Russia in the Second Half of 2020
title_full Surface Ozone Concentration in Russia in the Second Half of 2020
title_fullStr Surface Ozone Concentration in Russia in the Second Half of 2020
title_full_unstemmed Surface Ozone Concentration in Russia in the Second Half of 2020
title_short Surface Ozone Concentration in Russia in the Second Half of 2020
title_sort surface ozone concentration in russia in the second half of 2020
topic Optical Models and Databases
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8410021/
http://dx.doi.org/10.1134/S1024856021040035
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