Spatial distribution of enhanced BrO and its relation to meteorological parameters in Arctic and Antarctic sea ice regions

Satellite observations have shown large areas of elevated bromine monoxide (BrO) covering several thousand square kilometres over the Arctic and Antarctic sea ice regions in polar spring. These enhancements of total BrO columns result from increases in stratospheric or tropospheric bromine amounts o...

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Published in:Atmospheric Chemistry and Physics
Main Authors: Seo, Sora, Richter, Andreas, Blechschmidt, Anne-Marlene, Bougoudis, Ilias, Burrows, John Philip
Format: Text
Language:English
Published: 2020
Subjects:
Online Access:https://doi.org/10.5194/acp-20-12285-2020
https://acp.copernicus.org/articles/20/12285/2020/
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spelling ftcopernicus:oai:publications.copernicus.org:acp81388 2023-05-15T13:31:39+02:00 Spatial distribution of enhanced BrO and its relation to meteorological parameters in Arctic and Antarctic sea ice regions Seo, Sora Richter, Andreas Blechschmidt, Anne-Marlene Bougoudis, Ilias Burrows, John Philip 2020-10-29 application/pdf https://doi.org/10.5194/acp-20-12285-2020 https://acp.copernicus.org/articles/20/12285/2020/ eng eng doi:10.5194/acp-20-12285-2020 https://acp.copernicus.org/articles/20/12285/2020/ eISSN: 1680-7324 Text 2020 ftcopernicus https://doi.org/10.5194/acp-20-12285-2020 2020-11-02T17:22:13Z Satellite observations have shown large areas of elevated bromine monoxide (BrO) covering several thousand square kilometres over the Arctic and Antarctic sea ice regions in polar spring. These enhancements of total BrO columns result from increases in stratospheric or tropospheric bromine amounts or both, and their occurrence may be related to local meteorological conditions. In this study, the spatial distribution of the occurrence of total BrO column enhancements and the associated changes in meteorological parameters are investigated in both the Arctic and Antarctic regions using 10 years of Global Ozone Monitoring Experiment-2 (GOME-2) measurements and meteorological model data. Statistical analysis of the data presents clear differences in the meteorological conditions between the 10-year mean and episodes of enhanced total BrO columns in both polar sea ice regions. These differences show pronounced spatial patterns. In general, atmospheric low pressure, cold surface air temperature, high surface-level wind speed, and low tropopause heights were found during periods of enhanced total BrO columns. In addition, spatial patterns of prevailing wind directions related to the BrO enhancements are identified in both the Arctic and Antarctic sea ice regions. The relevance of the different meteorological parameters on the total BrO column is evaluated based on a Spearman rank correlation analysis, finding that tropopause height and surface air temperature have the largest correlations with the total BrO vertical column density. Our results demonstrate that specific meteorological parameters can have a major impact on the BrO enhancement in some areas, but in general, multiple meteorological parameters interact with each other in their influence on BrO columns. Text Antarc* Antarctic Arctic Sea ice Copernicus Publications: E-Journals Antarctic Arctic Atmospheric Chemistry and Physics 20 20 12285 12312
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collection Copernicus Publications: E-Journals
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language English
description Satellite observations have shown large areas of elevated bromine monoxide (BrO) covering several thousand square kilometres over the Arctic and Antarctic sea ice regions in polar spring. These enhancements of total BrO columns result from increases in stratospheric or tropospheric bromine amounts or both, and their occurrence may be related to local meteorological conditions. In this study, the spatial distribution of the occurrence of total BrO column enhancements and the associated changes in meteorological parameters are investigated in both the Arctic and Antarctic regions using 10 years of Global Ozone Monitoring Experiment-2 (GOME-2) measurements and meteorological model data. Statistical analysis of the data presents clear differences in the meteorological conditions between the 10-year mean and episodes of enhanced total BrO columns in both polar sea ice regions. These differences show pronounced spatial patterns. In general, atmospheric low pressure, cold surface air temperature, high surface-level wind speed, and low tropopause heights were found during periods of enhanced total BrO columns. In addition, spatial patterns of prevailing wind directions related to the BrO enhancements are identified in both the Arctic and Antarctic sea ice regions. The relevance of the different meteorological parameters on the total BrO column is evaluated based on a Spearman rank correlation analysis, finding that tropopause height and surface air temperature have the largest correlations with the total BrO vertical column density. Our results demonstrate that specific meteorological parameters can have a major impact on the BrO enhancement in some areas, but in general, multiple meteorological parameters interact with each other in their influence on BrO columns.
format Text
author Seo, Sora
Richter, Andreas
Blechschmidt, Anne-Marlene
Bougoudis, Ilias
Burrows, John Philip
spellingShingle Seo, Sora
Richter, Andreas
Blechschmidt, Anne-Marlene
Bougoudis, Ilias
Burrows, John Philip
Spatial distribution of enhanced BrO and its relation to meteorological parameters in Arctic and Antarctic sea ice regions
author_facet Seo, Sora
Richter, Andreas
Blechschmidt, Anne-Marlene
Bougoudis, Ilias
Burrows, John Philip
author_sort Seo, Sora
title Spatial distribution of enhanced BrO and its relation to meteorological parameters in Arctic and Antarctic sea ice regions
title_short Spatial distribution of enhanced BrO and its relation to meteorological parameters in Arctic and Antarctic sea ice regions
title_full Spatial distribution of enhanced BrO and its relation to meteorological parameters in Arctic and Antarctic sea ice regions
title_fullStr Spatial distribution of enhanced BrO and its relation to meteorological parameters in Arctic and Antarctic sea ice regions
title_full_unstemmed Spatial distribution of enhanced BrO and its relation to meteorological parameters in Arctic and Antarctic sea ice regions
title_sort spatial distribution of enhanced bro and its relation to meteorological parameters in arctic and antarctic sea ice regions
publishDate 2020
url https://doi.org/10.5194/acp-20-12285-2020
https://acp.copernicus.org/articles/20/12285/2020/
geographic Antarctic
Arctic
geographic_facet Antarctic
Arctic
genre Antarc*
Antarctic
Arctic
Sea ice
genre_facet Antarc*
Antarctic
Arctic
Sea ice
op_source eISSN: 1680-7324
op_relation doi:10.5194/acp-20-12285-2020
https://acp.copernicus.org/articles/20/12285/2020/
op_doi https://doi.org/10.5194/acp-20-12285-2020
container_title Atmospheric Chemistry and Physics
container_volume 20
container_issue 20
container_start_page 12285
op_container_end_page 12312
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