Combined sun-photometer–lidar inversion: lessons learned during the EARLINET/ACTRIS COVID-19 campaign
The European Aerosol Research Lidar Network (EARLINET), part of the Aerosols, Clouds and Trace gases Research Infrastructure (ACTRIS), organized an intensive observational campaign in May 2020, with the objective of monitoring the atmospheric state over Europe during the COVID-19 lockdown and relaxa...
Published in: | Atmospheric Measurement Techniques |
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Main Authors: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
Other Authors: | , , , , , , |
Format: | Article in Journal/Newspaper |
Language: | English |
Published: |
2023
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Subjects: | |
Online Access: | https://hdl.handle.net/11587/545266 https://doi.org/10.5194/amt-16-6025-2023 |
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author | Tsekeri, Alexandra Gialitaki, Anna Di Paolantonio, Marco Dionisi, Davide Liberti, Gian Luigi Fernandes, Alnilam Szkop, Artur Pietruczuk, Aleksander Pérez-Ramírez, Daniel Granados Muñoz, Maria J. Guerrero-Rascado, Juan Luis Alados-Arboledas, Lucas Bermejo Pantaleón, Diego Bravo-Aranda, Juan Antonio Kampouri, Anna Marinou, Eleni Amiridis, Vassilis Sicard, Michael Comerón, Adolfo Muñoz-Porcar, Constantino Rodríguez-Gómez, Alejandro Romano, Salvatore Perrone, Maria Rita Shang, Xiaoxia Komppula, Mika Mamouri, Rodanthi-Elisavet Nisantzi, Argyro Hadjimitsis, Diofantos Navas-Guzmán, Francisco Haefele, Alexander Szczepanik, Dominika Tomczak, Artur Stachlewska, Iwona S. Belegante, Livio Nicolae, Doina Voudouri, Kalliopi Artemis Balis, Dimitris Floutsi, Athena A. Baars, Holger Miladi, Linda Pascal, Nicolas Dubovik, Oleg Lopatin, Anton |
author2 | Tsekeri, Alexandra Gialitaki, Anna Di Paolantonio, Marco Dionisi, Davide Liberti, Gian Luigi Fernandes, Alnilam Szkop, Artur Pietruczuk, Aleksander Pérez-Ramírez, Daniel Granados Muñoz, Maria J. Guerrero-Rascado, Juan Lui Alados-Arboledas, Luca Bermejo Pantaleón, Diego Bravo-Aranda, Juan Antonio Kampouri, Anna Marinou, Eleni Amiridis, Vassili Sicard, Michael Comerón, Adolfo Muñoz-Porcar, Constantino Rodríguez-Gómez, Alejandro Romano, Salvatore Perrone, Maria Rita Shang, Xiaoxia Komppula, Mika Mamouri, Rodanthi-Elisavet Nisantzi, Argyro Hadjimitsis, Diofanto Navas-Guzmán, Francisco Haefele, Alexander Szczepanik, Dominika Tomczak, Artur Stachlewska, Iwona S. Belegante, Livio Nicolae, Doina Voudouri, Kalliopi Artemi Balis, Dimitri Floutsi, Athena A. Baars, Holger Miladi, Linda Pascal, Nicola Dubovik, Oleg Lopatin, Anton |
author_facet | Tsekeri, Alexandra Gialitaki, Anna Di Paolantonio, Marco Dionisi, Davide Liberti, Gian Luigi Fernandes, Alnilam Szkop, Artur Pietruczuk, Aleksander Pérez-Ramírez, Daniel Granados Muñoz, Maria J. Guerrero-Rascado, Juan Luis Alados-Arboledas, Lucas Bermejo Pantaleón, Diego Bravo-Aranda, Juan Antonio Kampouri, Anna Marinou, Eleni Amiridis, Vassilis Sicard, Michael Comerón, Adolfo Muñoz-Porcar, Constantino Rodríguez-Gómez, Alejandro Romano, Salvatore Perrone, Maria Rita Shang, Xiaoxia Komppula, Mika Mamouri, Rodanthi-Elisavet Nisantzi, Argyro Hadjimitsis, Diofantos Navas-Guzmán, Francisco Haefele, Alexander Szczepanik, Dominika Tomczak, Artur Stachlewska, Iwona S. Belegante, Livio Nicolae, Doina Voudouri, Kalliopi Artemis Balis, Dimitris Floutsi, Athena A. Baars, Holger Miladi, Linda Pascal, Nicolas Dubovik, Oleg Lopatin, Anton |
author_sort | Tsekeri, Alexandra |
collection | Università del Salento: CINECA IRIS |
container_issue | 24 |
container_start_page | 6025 |
container_title | Atmospheric Measurement Techniques |
container_volume | 16 |
description | The European Aerosol Research Lidar Network (EARLINET), part of the Aerosols, Clouds and Trace gases Research Infrastructure (ACTRIS), organized an intensive observational campaign in May 2020, with the objective of monitoring the atmospheric state over Europe during the COVID-19 lockdown and relaxation period. Besides the standard operational processing of the lidar data in EARLINET, for seven EARLINET sites having collocated sun-photometric observations in the Aerosol Robotic Network (AERONET), a network exercise was held in order to derive profiles of the concentration and effective column size distributions of the aerosols in the atmosphere, by applying the GRASP/GARRLiC (from Generalized Aerosol Retrieval from Radiometer and Lidar Combined data – GARRLiC – part of the Generalized Retrieval of Atmosphere and Surface Properties – GRASP) inversion algorithm. The objective of this network exercise was to explore the possibility of identifying the anthropogenic component and of monitoring its spatial and temporal characteristics in the COVID-19 lockdown and relaxation period. While the number of cases is far from being statistically significant so as to provide a conclusive description of the atmospheric aerosols over Europe during this period, this network exercise was fundamental to deriving a common methodology for applying GRASP/GARRLiC to a network of instruments with different characteristics. The limits of the approach are discussed, in particular the missing information close to the ground in the lidar measurements due to the instrument geometry and the sensitivity of the GRASP/GARRLiC retrieval to the settings used, especially for cases with low aerosol optical depth (AOD) like the ones we show here. We found that this sensitivity is well-characterized in the GRASP/GARRLiC products, since it is included in their retrieval uncertainties. |
format | Article in Journal/Newspaper |
genre | Aerosol Robotic Network |
genre_facet | Aerosol Robotic Network |
id | ftunivsalento:oai:iris.unisalento.it:11587/545266 |
institution | Open Polar |
language | English |
op_collection_id | ftunivsalento |
op_container_end_page | 6050 |
op_doi | https://doi.org/10.5194/amt-16-6025-2023 |
op_relation | info:eu-repo/semantics/altIdentifier/wos/WOS:001168852500001 volume:16 firstpage:6025 lastpage:6050 numberofpages:26 journal:ATMOSPHERIC MEASUREMENT TECHNIQUES https://hdl.handle.net/11587/545266 |
publishDate | 2023 |
record_format | openpolar |
spelling | ftunivsalento:oai:iris.unisalento.it:11587/545266 2025-03-02T15:11:51+00:00 Combined sun-photometer–lidar inversion: lessons learned during the EARLINET/ACTRIS COVID-19 campaign Tsekeri, Alexandra Gialitaki, Anna Di Paolantonio, Marco Dionisi, Davide Liberti, Gian Luigi Fernandes, Alnilam Szkop, Artur Pietruczuk, Aleksander Pérez-Ramírez, Daniel Granados Muñoz, Maria J. Guerrero-Rascado, Juan Luis Alados-Arboledas, Lucas Bermejo Pantaleón, Diego Bravo-Aranda, Juan Antonio Kampouri, Anna Marinou, Eleni Amiridis, Vassilis Sicard, Michael Comerón, Adolfo Muñoz-Porcar, Constantino Rodríguez-Gómez, Alejandro Romano, Salvatore Perrone, Maria Rita Shang, Xiaoxia Komppula, Mika Mamouri, Rodanthi-Elisavet Nisantzi, Argyro Hadjimitsis, Diofantos Navas-Guzmán, Francisco Haefele, Alexander Szczepanik, Dominika Tomczak, Artur Stachlewska, Iwona S. Belegante, Livio Nicolae, Doina Voudouri, Kalliopi Artemis Balis, Dimitris Floutsi, Athena A. Baars, Holger Miladi, Linda Pascal, Nicolas Dubovik, Oleg Lopatin, Anton Tsekeri, Alexandra Gialitaki, Anna Di Paolantonio, Marco Dionisi, Davide Liberti, Gian Luigi Fernandes, Alnilam Szkop, Artur Pietruczuk, Aleksander Pérez-Ramírez, Daniel Granados Muñoz, Maria J. Guerrero-Rascado, Juan Lui Alados-Arboledas, Luca Bermejo Pantaleón, Diego Bravo-Aranda, Juan Antonio Kampouri, Anna Marinou, Eleni Amiridis, Vassili Sicard, Michael Comerón, Adolfo Muñoz-Porcar, Constantino Rodríguez-Gómez, Alejandro Romano, Salvatore Perrone, Maria Rita Shang, Xiaoxia Komppula, Mika Mamouri, Rodanthi-Elisavet Nisantzi, Argyro Hadjimitsis, Diofanto Navas-Guzmán, Francisco Haefele, Alexander Szczepanik, Dominika Tomczak, Artur Stachlewska, Iwona S. Belegante, Livio Nicolae, Doina Voudouri, Kalliopi Artemi Balis, Dimitri Floutsi, Athena A. Baars, Holger Miladi, Linda Pascal, Nicola Dubovik, Oleg Lopatin, Anton 2023 ELETTRONICO https://hdl.handle.net/11587/545266 https://doi.org/10.5194/amt-16-6025-2023 eng eng info:eu-repo/semantics/altIdentifier/wos/WOS:001168852500001 volume:16 firstpage:6025 lastpage:6050 numberofpages:26 journal:ATMOSPHERIC MEASUREMENT TECHNIQUES https://hdl.handle.net/11587/545266 info:eu-repo/semantics/article 2023 ftunivsalento https://doi.org/10.5194/amt-16-6025-2023 2025-02-06T00:48:10Z The European Aerosol Research Lidar Network (EARLINET), part of the Aerosols, Clouds and Trace gases Research Infrastructure (ACTRIS), organized an intensive observational campaign in May 2020, with the objective of monitoring the atmospheric state over Europe during the COVID-19 lockdown and relaxation period. Besides the standard operational processing of the lidar data in EARLINET, for seven EARLINET sites having collocated sun-photometric observations in the Aerosol Robotic Network (AERONET), a network exercise was held in order to derive profiles of the concentration and effective column size distributions of the aerosols in the atmosphere, by applying the GRASP/GARRLiC (from Generalized Aerosol Retrieval from Radiometer and Lidar Combined data – GARRLiC – part of the Generalized Retrieval of Atmosphere and Surface Properties – GRASP) inversion algorithm. The objective of this network exercise was to explore the possibility of identifying the anthropogenic component and of monitoring its spatial and temporal characteristics in the COVID-19 lockdown and relaxation period. While the number of cases is far from being statistically significant so as to provide a conclusive description of the atmospheric aerosols over Europe during this period, this network exercise was fundamental to deriving a common methodology for applying GRASP/GARRLiC to a network of instruments with different characteristics. The limits of the approach are discussed, in particular the missing information close to the ground in the lidar measurements due to the instrument geometry and the sensitivity of the GRASP/GARRLiC retrieval to the settings used, especially for cases with low aerosol optical depth (AOD) like the ones we show here. We found that this sensitivity is well-characterized in the GRASP/GARRLiC products, since it is included in their retrieval uncertainties. Article in Journal/Newspaper Aerosol Robotic Network Università del Salento: CINECA IRIS Atmospheric Measurement Techniques 16 24 6025 6050 |
spellingShingle | Tsekeri, Alexandra Gialitaki, Anna Di Paolantonio, Marco Dionisi, Davide Liberti, Gian Luigi Fernandes, Alnilam Szkop, Artur Pietruczuk, Aleksander Pérez-Ramírez, Daniel Granados Muñoz, Maria J. Guerrero-Rascado, Juan Luis Alados-Arboledas, Lucas Bermejo Pantaleón, Diego Bravo-Aranda, Juan Antonio Kampouri, Anna Marinou, Eleni Amiridis, Vassilis Sicard, Michael Comerón, Adolfo Muñoz-Porcar, Constantino Rodríguez-Gómez, Alejandro Romano, Salvatore Perrone, Maria Rita Shang, Xiaoxia Komppula, Mika Mamouri, Rodanthi-Elisavet Nisantzi, Argyro Hadjimitsis, Diofantos Navas-Guzmán, Francisco Haefele, Alexander Szczepanik, Dominika Tomczak, Artur Stachlewska, Iwona S. Belegante, Livio Nicolae, Doina Voudouri, Kalliopi Artemis Balis, Dimitris Floutsi, Athena A. Baars, Holger Miladi, Linda Pascal, Nicolas Dubovik, Oleg Lopatin, Anton Combined sun-photometer–lidar inversion: lessons learned during the EARLINET/ACTRIS COVID-19 campaign |
title | Combined sun-photometer–lidar inversion: lessons learned during the EARLINET/ACTRIS COVID-19 campaign |
title_full | Combined sun-photometer–lidar inversion: lessons learned during the EARLINET/ACTRIS COVID-19 campaign |
title_fullStr | Combined sun-photometer–lidar inversion: lessons learned during the EARLINET/ACTRIS COVID-19 campaign |
title_full_unstemmed | Combined sun-photometer–lidar inversion: lessons learned during the EARLINET/ACTRIS COVID-19 campaign |
title_short | Combined sun-photometer–lidar inversion: lessons learned during the EARLINET/ACTRIS COVID-19 campaign |
title_sort | combined sun-photometer–lidar inversion: lessons learned during the earlinet/actris covid-19 campaign |
url | https://hdl.handle.net/11587/545266 https://doi.org/10.5194/amt-16-6025-2023 |