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COVID‐19 Crisis Reduces Free Tropospheric Ozone Across the Northern Hemisphere

Throughout spring and summer 2020, ozone stations in the northern extratropics recorded unusually low ozone in the free troposphere. From April to August, and from 1 to 8 kilometers altitude, ozone was on average 7% (≈4 nmol/mol) below the 2000–2020 climatological mean. Such low ozone, over several...

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Autores principales: Steinbrecht, Wolfgang, Kubistin, Dagmar, Plass‐Dülmer, Christian, Davies, Jonathan, Tarasick, David W., von der Gathen, Peter, Deckelmann, Holger, Jepsen, Nis, Kivi, Rigel, Lyall, Norrie, Palm, Matthias, Notholt, Justus, Kois, Bogumil, Oelsner, Peter, Allaart, Marc, Piters, Ankie, Gill, Michael, Van Malderen, Roeland, Delcloo, Andy W., Sussmann, Ralf, Mahieu, Emmanuel, Servais, Christian, Romanens, Gonzague, Stübi, Rene, Ancellet, Gerard, Godin‐Beekmann, Sophie, Yamanouchi, Shoma, Strong, Kimberly, Johnson, Bryan, Cullis, Patrick, Petropavlovskikh, Irina, Hannigan, James W., Hernandez, Jose‐Luis, Diaz Rodriguez, Ana, Nakano, Tatsumi, Chouza, Fernando, Leblanc, Thierry, Torres, Carlos, Garcia, Omaira, Röhling, Amelie N., Schneider, Matthias, Blumenstock, Thomas, Tully, Matt, Paton‐Walsh, Clare, Jones, Nicholas, Querel, Richard, Strahan, Susan, Stauffer, Ryan M., Thompson, Anne M., Inness, Antje, Engelen, Richard, Chang, Kai‐Lan, Cooper, Owen R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7995013/
https://www.ncbi.nlm.nih.gov/pubmed/33785974
http://dx.doi.org/10.1029/2020GL091987
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author Steinbrecht, Wolfgang
Kubistin, Dagmar
Plass‐Dülmer, Christian
Davies, Jonathan
Tarasick, David W.
von der Gathen, Peter
Deckelmann, Holger
Jepsen, Nis
Kivi, Rigel
Lyall, Norrie
Palm, Matthias
Notholt, Justus
Kois, Bogumil
Oelsner, Peter
Allaart, Marc
Piters, Ankie
Gill, Michael
Van Malderen, Roeland
Delcloo, Andy W.
Sussmann, Ralf
Mahieu, Emmanuel
Servais, Christian
Romanens, Gonzague
Stübi, Rene
Ancellet, Gerard
Godin‐Beekmann, Sophie
Yamanouchi, Shoma
Strong, Kimberly
Johnson, Bryan
Cullis, Patrick
Petropavlovskikh, Irina
Hannigan, James W.
Hernandez, Jose‐Luis
Diaz Rodriguez, Ana
Nakano, Tatsumi
Chouza, Fernando
Leblanc, Thierry
Torres, Carlos
Garcia, Omaira
Röhling, Amelie N.
Schneider, Matthias
Blumenstock, Thomas
Tully, Matt
Paton‐Walsh, Clare
Jones, Nicholas
Querel, Richard
Strahan, Susan
Stauffer, Ryan M.
Thompson, Anne M.
Inness, Antje
Engelen, Richard
Chang, Kai‐Lan
Cooper, Owen R.
author_facet Steinbrecht, Wolfgang
Kubistin, Dagmar
Plass‐Dülmer, Christian
Davies, Jonathan
Tarasick, David W.
von der Gathen, Peter
Deckelmann, Holger
Jepsen, Nis
Kivi, Rigel
Lyall, Norrie
Palm, Matthias
Notholt, Justus
Kois, Bogumil
Oelsner, Peter
Allaart, Marc
Piters, Ankie
Gill, Michael
Van Malderen, Roeland
Delcloo, Andy W.
Sussmann, Ralf
Mahieu, Emmanuel
Servais, Christian
Romanens, Gonzague
Stübi, Rene
Ancellet, Gerard
Godin‐Beekmann, Sophie
Yamanouchi, Shoma
Strong, Kimberly
Johnson, Bryan
Cullis, Patrick
Petropavlovskikh, Irina
Hannigan, James W.
Hernandez, Jose‐Luis
Diaz Rodriguez, Ana
Nakano, Tatsumi
Chouza, Fernando
Leblanc, Thierry
Torres, Carlos
Garcia, Omaira
Röhling, Amelie N.
Schneider, Matthias
Blumenstock, Thomas
Tully, Matt
Paton‐Walsh, Clare
Jones, Nicholas
Querel, Richard
Strahan, Susan
Stauffer, Ryan M.
Thompson, Anne M.
Inness, Antje
Engelen, Richard
Chang, Kai‐Lan
Cooper, Owen R.
author_sort Steinbrecht, Wolfgang
collection PubMed
description Throughout spring and summer 2020, ozone stations in the northern extratropics recorded unusually low ozone in the free troposphere. From April to August, and from 1 to 8 kilometers altitude, ozone was on average 7% (≈4 nmol/mol) below the 2000–2020 climatological mean. Such low ozone, over several months, and at so many stations, has not been observed in any previous year since at least 2000. Atmospheric composition analyses from the Copernicus Atmosphere Monitoring Service and simulations from the NASA GMI model indicate that the large 2020 springtime ozone depletion in the Arctic stratosphere contributed less than one‐quarter of the observed tropospheric anomaly. The observed anomaly is consistent with recent chemistry‐climate model simulations, which assume emissions reductions similar to those caused by the COVID‐19 crisis. COVID‐19 related emissions reductions appear to be the major cause for the observed reduced free tropospheric ozone in 2020.
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spelling pubmed-79950132021-03-26 COVID‐19 Crisis Reduces Free Tropospheric Ozone Across the Northern Hemisphere Steinbrecht, Wolfgang Kubistin, Dagmar Plass‐Dülmer, Christian Davies, Jonathan Tarasick, David W. von der Gathen, Peter Deckelmann, Holger Jepsen, Nis Kivi, Rigel Lyall, Norrie Palm, Matthias Notholt, Justus Kois, Bogumil Oelsner, Peter Allaart, Marc Piters, Ankie Gill, Michael Van Malderen, Roeland Delcloo, Andy W. Sussmann, Ralf Mahieu, Emmanuel Servais, Christian Romanens, Gonzague Stübi, Rene Ancellet, Gerard Godin‐Beekmann, Sophie Yamanouchi, Shoma Strong, Kimberly Johnson, Bryan Cullis, Patrick Petropavlovskikh, Irina Hannigan, James W. Hernandez, Jose‐Luis Diaz Rodriguez, Ana Nakano, Tatsumi Chouza, Fernando Leblanc, Thierry Torres, Carlos Garcia, Omaira Röhling, Amelie N. Schneider, Matthias Blumenstock, Thomas Tully, Matt Paton‐Walsh, Clare Jones, Nicholas Querel, Richard Strahan, Susan Stauffer, Ryan M. Thompson, Anne M. Inness, Antje Engelen, Richard Chang, Kai‐Lan Cooper, Owen R. Geophys Res Lett Research Letter Throughout spring and summer 2020, ozone stations in the northern extratropics recorded unusually low ozone in the free troposphere. From April to August, and from 1 to 8 kilometers altitude, ozone was on average 7% (≈4 nmol/mol) below the 2000–2020 climatological mean. Such low ozone, over several months, and at so many stations, has not been observed in any previous year since at least 2000. Atmospheric composition analyses from the Copernicus Atmosphere Monitoring Service and simulations from the NASA GMI model indicate that the large 2020 springtime ozone depletion in the Arctic stratosphere contributed less than one‐quarter of the observed tropospheric anomaly. The observed anomaly is consistent with recent chemistry‐climate model simulations, which assume emissions reductions similar to those caused by the COVID‐19 crisis. COVID‐19 related emissions reductions appear to be the major cause for the observed reduced free tropospheric ozone in 2020. John Wiley and Sons Inc. 2021-02-26 2021-03-16 /pmc/articles/PMC7995013/ /pubmed/33785974 http://dx.doi.org/10.1029/2020GL091987 Text en © 2021. The Authors. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Letter
Steinbrecht, Wolfgang
Kubistin, Dagmar
Plass‐Dülmer, Christian
Davies, Jonathan
Tarasick, David W.
von der Gathen, Peter
Deckelmann, Holger
Jepsen, Nis
Kivi, Rigel
Lyall, Norrie
Palm, Matthias
Notholt, Justus
Kois, Bogumil
Oelsner, Peter
Allaart, Marc
Piters, Ankie
Gill, Michael
Van Malderen, Roeland
Delcloo, Andy W.
Sussmann, Ralf
Mahieu, Emmanuel
Servais, Christian
Romanens, Gonzague
Stübi, Rene
Ancellet, Gerard
Godin‐Beekmann, Sophie
Yamanouchi, Shoma
Strong, Kimberly
Johnson, Bryan
Cullis, Patrick
Petropavlovskikh, Irina
Hannigan, James W.
Hernandez, Jose‐Luis
Diaz Rodriguez, Ana
Nakano, Tatsumi
Chouza, Fernando
Leblanc, Thierry
Torres, Carlos
Garcia, Omaira
Röhling, Amelie N.
Schneider, Matthias
Blumenstock, Thomas
Tully, Matt
Paton‐Walsh, Clare
Jones, Nicholas
Querel, Richard
Strahan, Susan
Stauffer, Ryan M.
Thompson, Anne M.
Inness, Antje
Engelen, Richard
Chang, Kai‐Lan
Cooper, Owen R.
COVID‐19 Crisis Reduces Free Tropospheric Ozone Across the Northern Hemisphere
title COVID‐19 Crisis Reduces Free Tropospheric Ozone Across the Northern Hemisphere
title_full COVID‐19 Crisis Reduces Free Tropospheric Ozone Across the Northern Hemisphere
title_fullStr COVID‐19 Crisis Reduces Free Tropospheric Ozone Across the Northern Hemisphere
title_full_unstemmed COVID‐19 Crisis Reduces Free Tropospheric Ozone Across the Northern Hemisphere
title_short COVID‐19 Crisis Reduces Free Tropospheric Ozone Across the Northern Hemisphere
title_sort covid‐19 crisis reduces free tropospheric ozone across the northern hemisphere
topic Research Letter
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7995013/
https://www.ncbi.nlm.nih.gov/pubmed/33785974
http://dx.doi.org/10.1029/2020GL091987
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