Aerosol characterization in Northern Africa, Northeastern Atlantic, Mediterranean Basin and Middle East from direct-sun AERONET observations

We provide an atmospheric aerosol characterization for North Africa, Northeastern Atlantic, Mediterranean and Middle East based on the analysis of quality-assured direct-sun observations of 39 stations of the AErosol RObotic NETwork (AERONET) which include at least an annual cycle within the 1994–20...

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Published in:Atmospheric Chemistry and Physics
Main Authors: Basart, Sara, Pérez García-Pando, Carlos, Cuevas Agulló, Emilio, Baldasano, José María, Gobbi, Gian Paolo
Format: Article in Journal/Newspaper
Language:English
Published: European Geosciences Union 2009
Subjects:
Online Access:https://hdl.handle.net/20.500.11765/394
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spelling ftaemet:oai:repositorio.aemet.es:20.500.11765/394 2024-06-23T07:44:59+00:00 Aerosol characterization in Northern Africa, Northeastern Atlantic, Mediterranean Basin and Middle East from direct-sun AERONET observations Basart, Sara Pérez García-Pando, Carlos Cuevas Agulló, Emilio Baldasano, José María Gobbi, Gian Paolo 2009 application/pdf https://hdl.handle.net/20.500.11765/394 eng eng European Geosciences Union http://hdl.handle.net/20.500.11765/6496 https://dx.doi.org/10.5194/acp-9-8265-2009 Atmospheric Chemistry and Physics. 2009, 9(17), p. 8265–8282 1680-7316 1680-7324 http://hdl.handle.net/20.500.11765/394 info:eu-repo/semantics/openAccess Aerosol characterization AErosol RObotic NETwork (AERONET) Direct-sun observations Aerosoles info:eu-repo/semantics/article 2009 ftaemet https://doi.org/20.500.11765/39410.5194/acp-9-8265-2009 2024-06-03T14:17:56Z We provide an atmospheric aerosol characterization for North Africa, Northeastern Atlantic, Mediterranean and Middle East based on the analysis of quality-assured direct-sun observations of 39 stations of the AErosol RObotic NETwork (AERONET) which include at least an annual cycle within the 1994–2007 period. We extensively test and apply the recently introduced graphical method of Gobbi and co-authors to track and discriminate different aerosol types and quantify the contribution of mineral dust. The method relies on the combined analysis of the Ångström exponent (α) and its spectral curvature δα. Plotting data in these coordinates allows to infer aerosol fine mode radius (Rf) and fractional contribution (η) to total Aerosol Optical Depth (AOD) and separate AOD growth due to fine-mode aerosol humidification and/or coagulation from AOD growth due to the increase in coarse particles or cloud contamination. Our results confirm the robustness of this graphical method. Large mineral dust is found to be the most important constituent in Northern Africa and Middle East. Under specific meteorological conditions, its transport to Southern Europe is observed from spring to autumn and decreasing with latitude. We observe "pure Saharan dust" conditions to show AOD>0.7 (ranging up to 5), α<0.3 and δα<0 corresponding to η<40% and (Rf)~0.13 μm. Small pollution particles are abundant in sites close to urban and industrial areas of Continental and Eastern Europe and Middle East, as well as, important contributions of biomass burning are observed in the sub-Sahel region in winter. These small aerosols are associated to AOD<1, α>1.5 and δα~−0.2 corresponding to η>70% and Rf~0.13 μm. Here, dust mixed with fine pollution aerosols shifts the observations to the region α<0.75, in which the fine mode contribution is less than 40%. This work was funded by the project CICYT CGL2006-11879 of the Spanish Ministry of Education and Science. GPG activity was partly supported by the AEROCLOUDS project, funded by the ... Article in Journal/Newspaper Aerosol Robotic Network ARCIMÍS (Archivo Climatológico y Meteorológico Institucional - AEMET, Agencia Estatal de Meteorología) Atmospheric Chemistry and Physics 9 21 8265 8282
institution Open Polar
collection ARCIMÍS (Archivo Climatológico y Meteorológico Institucional - AEMET, Agencia Estatal de Meteorología)
op_collection_id ftaemet
language English
topic Aerosol characterization
AErosol RObotic NETwork (AERONET)
Direct-sun observations
Aerosoles
spellingShingle Aerosol characterization
AErosol RObotic NETwork (AERONET)
Direct-sun observations
Aerosoles
Basart, Sara
Pérez García-Pando, Carlos
Cuevas Agulló, Emilio
Baldasano, José María
Gobbi, Gian Paolo
Aerosol characterization in Northern Africa, Northeastern Atlantic, Mediterranean Basin and Middle East from direct-sun AERONET observations
topic_facet Aerosol characterization
AErosol RObotic NETwork (AERONET)
Direct-sun observations
Aerosoles
description We provide an atmospheric aerosol characterization for North Africa, Northeastern Atlantic, Mediterranean and Middle East based on the analysis of quality-assured direct-sun observations of 39 stations of the AErosol RObotic NETwork (AERONET) which include at least an annual cycle within the 1994–2007 period. We extensively test and apply the recently introduced graphical method of Gobbi and co-authors to track and discriminate different aerosol types and quantify the contribution of mineral dust. The method relies on the combined analysis of the Ångström exponent (α) and its spectral curvature δα. Plotting data in these coordinates allows to infer aerosol fine mode radius (Rf) and fractional contribution (η) to total Aerosol Optical Depth (AOD) and separate AOD growth due to fine-mode aerosol humidification and/or coagulation from AOD growth due to the increase in coarse particles or cloud contamination. Our results confirm the robustness of this graphical method. Large mineral dust is found to be the most important constituent in Northern Africa and Middle East. Under specific meteorological conditions, its transport to Southern Europe is observed from spring to autumn and decreasing with latitude. We observe "pure Saharan dust" conditions to show AOD>0.7 (ranging up to 5), α<0.3 and δα<0 corresponding to η<40% and (Rf)~0.13 μm. Small pollution particles are abundant in sites close to urban and industrial areas of Continental and Eastern Europe and Middle East, as well as, important contributions of biomass burning are observed in the sub-Sahel region in winter. These small aerosols are associated to AOD<1, α>1.5 and δα~−0.2 corresponding to η>70% and Rf~0.13 μm. Here, dust mixed with fine pollution aerosols shifts the observations to the region α<0.75, in which the fine mode contribution is less than 40%. This work was funded by the project CICYT CGL2006-11879 of the Spanish Ministry of Education and Science. GPG activity was partly supported by the AEROCLOUDS project, funded by the ...
format Article in Journal/Newspaper
author Basart, Sara
Pérez García-Pando, Carlos
Cuevas Agulló, Emilio
Baldasano, José María
Gobbi, Gian Paolo
author_facet Basart, Sara
Pérez García-Pando, Carlos
Cuevas Agulló, Emilio
Baldasano, José María
Gobbi, Gian Paolo
author_sort Basart, Sara
title Aerosol characterization in Northern Africa, Northeastern Atlantic, Mediterranean Basin and Middle East from direct-sun AERONET observations
title_short Aerosol characterization in Northern Africa, Northeastern Atlantic, Mediterranean Basin and Middle East from direct-sun AERONET observations
title_full Aerosol characterization in Northern Africa, Northeastern Atlantic, Mediterranean Basin and Middle East from direct-sun AERONET observations
title_fullStr Aerosol characterization in Northern Africa, Northeastern Atlantic, Mediterranean Basin and Middle East from direct-sun AERONET observations
title_full_unstemmed Aerosol characterization in Northern Africa, Northeastern Atlantic, Mediterranean Basin and Middle East from direct-sun AERONET observations
title_sort aerosol characterization in northern africa, northeastern atlantic, mediterranean basin and middle east from direct-sun aeronet observations
publisher European Geosciences Union
publishDate 2009
url https://hdl.handle.net/20.500.11765/394
genre Aerosol Robotic Network
genre_facet Aerosol Robotic Network
op_relation http://hdl.handle.net/20.500.11765/6496
https://dx.doi.org/10.5194/acp-9-8265-2009
Atmospheric Chemistry and Physics. 2009, 9(17), p. 8265–8282
1680-7316
1680-7324
http://hdl.handle.net/20.500.11765/394
op_rights info:eu-repo/semantics/openAccess
op_doi https://doi.org/20.500.11765/39410.5194/acp-9-8265-2009
container_title Atmospheric Chemistry and Physics
container_volume 9
container_issue 21
container_start_page 8265
op_container_end_page 8282
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