International audienceMarine-produced short-lived trace gases such as dibromomethane (CH2Br2), bromoform (CHBr3), methyliodide (CH3I) and dimethyl sulfide (DMS) significantly impact tropospheric and stratospheric chemistry. Describing their marine emissions in atmospheric chemistry models as accurately as possible is necessary to quantify their impact on ozone depletion and Earth's radiative budget. So far, marine emissions of trace gases have mainly been prescribed from emission climatologies, thus lacking the interaction between the actual state of the atmosphere and the ocean. Here we present simulations with the chemistry climate model EMAC (ECHAM5/MESSy Atmospheric Chemistry) with online calculation of emissions based on surface water ...
Halogenated very short lived substances (VSLS) affect the ozone budget in the atmosphere. Brominated...
Oceanic emissions of sulfur containing trace gases alter global atmospheric chemistry. The gases act...
Oceanic emissions of sulfur containing trace gases alter global atmospheric chemistry. The gases act...
International audienceMarine-produced short-lived trace gases such as dibromomethane (CH2Br2), bromo...
Marine-produced short-lived trace gases such as dibromomethane (CH<sub>2</sub>Br<sub>2</sub>), bromo...
Marine-produced short-lived trace gases such as dibromomethane (CH2Br2), bromoform (CHBr3), methylio...
Marine-produced short-lived trace gases such as dibromomethane (CH2Br2), bromoform (CHBr3), methylio...
Marine-produced short-lived trace gases such as dibromomethane (CH$_{2}$Br$_{2}$), bromoform (CHBr$_...
Volatile halogenated organic compounds containing bromine and iodine, which are naturally produced i...
Volatile halogenated organic compounds containing bromine and iodine, which are naturally produced i...
Halogenated Very Short-lived Substances (VSLS), such as bromoform, dibromomethane and methyl iodide,...
Halogenated Very Short-lived Substances (VSLS), such as bromoform, dibromomethane and methyl iodide,...
Halogenated Very Short-lived Substances (VSLS), such as bromoform, dibromomethane and methyl iodide,...
International audienceVolatile halogenated organic compounds containing bromine and iodine, which ar...
The ocean emits a wide range of trace gases, such as volatile organic compounds, or sulfur-,nitrogen...
Halogenated very short lived substances (VSLS) affect the ozone budget in the atmosphere. Brominated...
Oceanic emissions of sulfur containing trace gases alter global atmospheric chemistry. The gases act...
Oceanic emissions of sulfur containing trace gases alter global atmospheric chemistry. The gases act...
International audienceMarine-produced short-lived trace gases such as dibromomethane (CH2Br2), bromo...
Marine-produced short-lived trace gases such as dibromomethane (CH<sub>2</sub>Br<sub>2</sub>), bromo...
Marine-produced short-lived trace gases such as dibromomethane (CH2Br2), bromoform (CHBr3), methylio...
Marine-produced short-lived trace gases such as dibromomethane (CH2Br2), bromoform (CHBr3), methylio...
Marine-produced short-lived trace gases such as dibromomethane (CH$_{2}$Br$_{2}$), bromoform (CHBr$_...
Volatile halogenated organic compounds containing bromine and iodine, which are naturally produced i...
Volatile halogenated organic compounds containing bromine and iodine, which are naturally produced i...
Halogenated Very Short-lived Substances (VSLS), such as bromoform, dibromomethane and methyl iodide,...
Halogenated Very Short-lived Substances (VSLS), such as bromoform, dibromomethane and methyl iodide,...
Halogenated Very Short-lived Substances (VSLS), such as bromoform, dibromomethane and methyl iodide,...
International audienceVolatile halogenated organic compounds containing bromine and iodine, which ar...
The ocean emits a wide range of trace gases, such as volatile organic compounds, or sulfur-,nitrogen...
Halogenated very short lived substances (VSLS) affect the ozone budget in the atmosphere. Brominated...
Oceanic emissions of sulfur containing trace gases alter global atmospheric chemistry. The gases act...
Oceanic emissions of sulfur containing trace gases alter global atmospheric chemistry. The gases act...