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    The GLAM Airborne Campaign across the Mediterranean Basin

    Source: Bulletin of the American Meteorological Society:;2017:;volume 099:;issue 002::page 361
    Author:
    Ricaud, Philippe
    ,
    Zbinden, Régina
    ,
    Catoire, Valéry
    ,
    Brocchi, Vanessa
    ,
    Dulac, François
    ,
    Hamonou, Eric
    ,
    Canonici, Jean-Christophe
    ,
    El Amraoui, Laaziz
    ,
    Massart, Sébastien
    ,
    Piguet, Bruno
    ,
    Dayan, Uri
    ,
    Nabat, Pierre
    ,
    Sciare, Jean
    ,
    Ramonet, Michel
    ,
    Delmotte, Marc
    ,
    di Sarra, Alcide
    ,
    Sferlazzo, Damiano
    ,
    di Iorio, Tatiana
    ,
    Piacentino, Salvatore
    ,
    Cristofanelli, Paolo
    ,
    Mihalopoulos, Nikos
    ,
    Kouvarakis, Giorgos
    ,
    Pikridas, Michael
    ,
    Savvides, Chrysanthos
    ,
    Mamouri, Rodanthi-Elisavet
    ,
    Nisantzi, Argyro
    ,
    Hadjimitsis, Diofantos
    ,
    Attié, Jean-Luc
    ,
    Ferré, Hélène
    ,
    Kangah, Yannick
    ,
    Jaidan, Nizar
    ,
    Guth, Jonathan
    ,
    Jacquet, Patrick
    ,
    Chevrier, Stéphane
    ,
    Robert, Claude
    ,
    Bourdon, Aurélien
    ,
    Bourdinot, Jean-François
    ,
    Etienne, Jean-Claude
    ,
    Krysztofiak, Gisèle
    ,
    Theron, Pierre
    DOI: 10.1175/BAMS-D-16-0226.1
    Publisher: American Meteorological Society
    Abstract: AbstractThe Gradient in Longitude of Atmospheric Constituents above the Mediterranean Basin (GLAM) airborne campaign was set up to investigate the summertime variability of gaseous pollutants, greenhouse gases, and aerosols between the western (?3°E) and eastern (?35°E) sections of the Mediterranean basin as well as how this connects with the impact of the Asian monsoon anticyclone on the eastern Mediterranean in the mid- to upper troposphere (?5?10 km). GLAM falls within the framework of the Chemistry?Aerosol Mediterranean Experiment (ChArMEx) program. GLAM used the French Falcon-20 research aircraft to measure aerosols, humidity, and chemical compounds: ozone, carbon monoxide, methane, and carbon dioxide. GLAM took place between 6 and 10 August 2014, following a route from Toulouse (France) to Larnaca (Cyprus) and back again via Minorca (Spain), Lampedusa (Italy), and Heraklion (Crete, Greece). The aircraft flew at an altitude of 5 km on its outbound journey and 10 km on the return leg. GLAM also collected vertical profiles around the landing sites listed above. A combination of model outputs, chemical mapping analyses, and spaceborne and surface station measurements gathered prior to and during the campaign were used to interpret the in situ airborne measurements. The main outcome of this study is the impact of intercontinental transport on the longitudinal variability of pollutants, greenhouse gases, and aerosols at an altitude of 10 km. The eastern Mediterranean is affected by air masses from the Arabian Sea surface, and the western Mediterranean is impacted by air masses from North America (biomass burning) and West Africa (desert dust).
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      The GLAM Airborne Campaign across the Mediterranean Basin

    URI
    http://yetl.yabesh.ir/yetl1/handle/yetl/4261650
    Collections
    • Bulletin of the American Meteorological Society

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    contributor authorRicaud, Philippe
    contributor authorZbinden, Régina
    contributor authorCatoire, Valéry
    contributor authorBrocchi, Vanessa
    contributor authorDulac, François
    contributor authorHamonou, Eric
    contributor authorCanonici, Jean-Christophe
    contributor authorEl Amraoui, Laaziz
    contributor authorMassart, Sébastien
    contributor authorPiguet, Bruno
    contributor authorDayan, Uri
    contributor authorNabat, Pierre
    contributor authorSciare, Jean
    contributor authorRamonet, Michel
    contributor authorDelmotte, Marc
    contributor authordi Sarra, Alcide
    contributor authorSferlazzo, Damiano
    contributor authordi Iorio, Tatiana
    contributor authorPiacentino, Salvatore
    contributor authorCristofanelli, Paolo
    contributor authorMihalopoulos, Nikos
    contributor authorKouvarakis, Giorgos
    contributor authorPikridas, Michael
    contributor authorSavvides, Chrysanthos
    contributor authorMamouri, Rodanthi-Elisavet
    contributor authorNisantzi, Argyro
    contributor authorHadjimitsis, Diofantos
    contributor authorAttié, Jean-Luc
    contributor authorFerré, Hélène
    contributor authorKangah, Yannick
    contributor authorJaidan, Nizar
    contributor authorGuth, Jonathan
    contributor authorJacquet, Patrick
    contributor authorChevrier, Stéphane
    contributor authorRobert, Claude
    contributor authorBourdon, Aurélien
    contributor authorBourdinot, Jean-François
    contributor authorEtienne, Jean-Claude
    contributor authorKrysztofiak, Gisèle
    contributor authorTheron, Pierre
    date accessioned2019-09-19T10:06:41Z
    date available2019-09-19T10:06:41Z
    date copyright7/28/2017 12:00:00 AM
    date issued2017
    identifier otherbams-d-16-0226.1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4261650
    description abstractAbstractThe Gradient in Longitude of Atmospheric Constituents above the Mediterranean Basin (GLAM) airborne campaign was set up to investigate the summertime variability of gaseous pollutants, greenhouse gases, and aerosols between the western (?3°E) and eastern (?35°E) sections of the Mediterranean basin as well as how this connects with the impact of the Asian monsoon anticyclone on the eastern Mediterranean in the mid- to upper troposphere (?5?10 km). GLAM falls within the framework of the Chemistry?Aerosol Mediterranean Experiment (ChArMEx) program. GLAM used the French Falcon-20 research aircraft to measure aerosols, humidity, and chemical compounds: ozone, carbon monoxide, methane, and carbon dioxide. GLAM took place between 6 and 10 August 2014, following a route from Toulouse (France) to Larnaca (Cyprus) and back again via Minorca (Spain), Lampedusa (Italy), and Heraklion (Crete, Greece). The aircraft flew at an altitude of 5 km on its outbound journey and 10 km on the return leg. GLAM also collected vertical profiles around the landing sites listed above. A combination of model outputs, chemical mapping analyses, and spaceborne and surface station measurements gathered prior to and during the campaign were used to interpret the in situ airborne measurements. The main outcome of this study is the impact of intercontinental transport on the longitudinal variability of pollutants, greenhouse gases, and aerosols at an altitude of 10 km. The eastern Mediterranean is affected by air masses from the Arabian Sea surface, and the western Mediterranean is impacted by air masses from North America (biomass burning) and West Africa (desert dust).
    publisherAmerican Meteorological Society
    titleThe GLAM Airborne Campaign across the Mediterranean Basin
    typeJournal Paper
    journal volume99
    journal issue2
    journal titleBulletin of the American Meteorological Society
    identifier doi10.1175/BAMS-D-16-0226.1
    journal fristpage361
    journal lastpage380
    treeBulletin of the American Meteorological Society:;2017:;volume 099:;issue 002
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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