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Wet deposition in the remote western and central Mediterranean as a source of trace metals to surface seawater

Authors :
Desboeufs, Karine
Fu, Franck
Bressac, Matthieu
Tovar-sánchez, Antonio
Triquet, Sylvain
Doussin, Jean-françois
Giorio, Chiara
Chazette, Patrick
Disnaquet, Julie
Feron, Anaïs
Formenti, Paola
Maisonneuve, Franck
Rodríguez-romero, Araceli
Zapf, Pascal
Dulac, François
Guieu, Cécile
Desboeufs, Karine
Fu, Franck
Bressac, Matthieu
Tovar-sánchez, Antonio
Triquet, Sylvain
Doussin, Jean-françois
Giorio, Chiara
Chazette, Patrick
Disnaquet, Julie
Feron, Anaïs
Formenti, Paola
Maisonneuve, Franck
Rodríguez-romero, Araceli
Zapf, Pascal
Dulac, François
Guieu, Cécile
Source :
Atmospheric Chemistry And Physics (1680-7316) (Copernicus GmbH), 2022-02 , Vol. 22 , N. 4 , P. 2309-2332
Publication Year :
2022

Abstract

his study reports the only recent characterisation of two contrasted wet deposition events collected during the PEACETIME cruise in the Mediterranean open seawater, and their impact on trace metals (TMS) marine stocks. Rain samples were analysed for Al, 12 trace metals (TMs hereafter, including Co, Cd, Cr, Cu, Fe, Mn, Mo, Ni, Pb, Ti, V and Zn) and nutrients (N, P, DOC) concentrations. The first rain sample collected in the Ionian Sea (rain ION) was a wet typical regional background deposition event whereas the second rain collected in the Algerian Basin (rain FAST) was a Saharan dust wet deposition. The concentrations of TMs in the two rain samples were significantly lower compared to concentrations in rains collected at coastal sites reported in the literature, suggesting either less anthropogenic influence in the remote Mediterranean environment, or decreased emissions during the last decades in the Mediterranean Sea. The TMs inventories in the surface microlayer and mixed layer (0–20 m) at ION and FAST stations before and after the events, compared to atmospheric fluxes, showed that the atmospheric inputs were a significant source of particulate TMs for both layers. At the scale of the western and central Mediterranean, the atmospheric inputs were of the same order of magnitude as marine stocks within the ML for dissolved Fe, Co and Zn, underlining the role of the atmosphere in their biogeochemical cycle in the stratified Mediterranean Sea. In case of intense wet dust deposition event, the contribution of atmospheric inputs could be critical for dissolved stocks of the majority of TMs.

Details

Database :
OAIster
Journal :
Atmospheric Chemistry And Physics (1680-7316) (Copernicus GmbH), 2022-02 , Vol. 22 , N. 4 , P. 2309-2332
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1286208389
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.5194.acp-22-2309-2022