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Aurelien Dommergue

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Articles 39
Citations 247
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Recent Articles
1.
Bencardino M, DAmore F, Angot H, Angiuli L, Bertrand Y, Cairns W, et al.
Environ Pollut . 2024 Oct; 363(Pt 2):125104. PMID: 39477003
The Global Mercury Observation System (GMOS) network, initially a five-year project (2010-2015) funded by the European Commission, continued as a GEO Flagship program to support the Global Observation System for...
2.
Rossi F, Duchaine C, Tignat-Perrier R, Joly M, Larose C, Dommergue A, et al.
Sci Total Environ . 2023 Dec; 912:169567. PMID: 38145686
The recent characterization of antibiotic resistance genes (ARGs) in clouds evidenced that the atmosphere actively partakes in the global spreading of antibiotic resistance worldwide. Indeed, the outdoor atmosphere continuously receives...
3.
Magand O, Angot H, Bertrand Y, Sonke J, Laffont L, Duperray S, et al.
Sci Data . 2023 Nov; 10(1):836. PMID: 38016986
The Minamata Convention, a global and legally binding treaty that entered into force in 2017, aims to protect human health and the environment from harmful mercury (Hg) effects by reducing...
4.
Gustin M, Dunham-Cheatham S, Osterwalder S, Magand O, Dommergue A
Sci Total Environ . 2023 Oct; 907:167895. PMID: 37866618
The most efficient way to quantify Hg inputs to ecosystems is to measure wet and dry deposition. Wet deposition of Hg is determined by measuring Hg concentrations and the volume...
5.
Gustin M, Dunham-Cheatham S, Allen N, Choma N, Johnson W, Lopez S, et al.
Sci Total Environ . 2023 Aug; 904:166184. PMID: 37586514
The Hg research community needs methods to more accurately measure atmospheric Hg concentrations and chemistry. The Reactive Mercury Active System (RMAS) uses cation exchange, nylon, and PTFE membranes to determine...
6.
Tassone A, Magand O, Naccarato A, Martino M, Amico D, Sprovieri F, et al.
Heliyon . 2023 Apr; 9(3):e14608. PMID: 37020937
Mercury (Hg) fate and transport research requires more effort to obtain a deep knowledge of its biogeochemical cycle, particularly in the Southern Hemisphere and Tropics that are still missing of...
7.
Araujo B, Osterwalder S, Szponar N, Lee D, Petrova M, Pernov J, et al.
Nat Commun . 2022 Aug; 13(1):4956. PMID: 36002442
During Arctic springtime, halogen radicals oxidize atmospheric elemental mercury (Hg), which deposits to the cryosphere. This is followed by a summertime atmospheric Hg peak that is thought to result mostly...
8.
Dietz R, Wilson S, Loseto L, Dommergue A, Xie Z, Sonne C, et al.
Sci Total Environ . 2022 Jun; 843:157020. PMID: 35764153
This Editorial presents an overview of the Special Issue on advances in Arctic mercury (Hg) science synthesized from the 2021 assessment of the Arctic Monitoring and Assessment Programme (AMAP). Mercury...
9.
Marelle L, Thomas J, Ahmed S, Tuite K, Stutz J, Dommergue A, et al.
J Adv Model Earth Syst . 2021 Aug; 13(8):e2020MS002391. PMID: 34434492
Elevated concentrations of atmospheric bromine are known to cause ozone depletion in the Arctic, which is most frequently observed during springtime. We implement a detailed description of bromine and chlorine...
10.
Xie Z, Wang Z, Magand O, Thollot A, Ebinghaus R, Mi W, et al.
Sci Total Environ . 2020 Jun; 741:140200. PMID: 32599399
Concentrations of 9 organophosphate esters (OPEs), 16 perfluoroalkylated substances (PFASs) and 17 polycyclic aromatic hydrocarbons (PAHs) were investigated in surface snow samples collected at Dome C on the Antarctic Plateau...