We present an updated mechanism for tropospheric halogen (Clĝ€¯+ĝ€¯Brĝ€¯+ĝ€¯I) chemistry in the GEOS-Chem global atmospheric chemical transport model and apply it to investigate halogen radical cycling and implications for tropospheric oxidants. Improved representation of HOBr heterogeneous chemistry and its pH dependence in our simulation leads to less efficient recycling and mobilization of bromine radicals and enables the model to include mechanistic sea salt aerosol debromination without generating excessive BrO. The resulting global mean tropospheric BrO mixing ratio is 0.19ĝ€¯ppt (parts per trillion), lower than previous versions of GEOS-Chem. Model BrO shows variable consistency and biases in comparison to surface and aircraft observ...
The chemistry of the halogen species bromine and iodine has a range of impacts on tropospheric compo...
International audienceThe atmospheric chemistry of halogenated species (Cl, Br, I) participates in t...
International audienceThe atmospheric chemistry of halogenated species (Cl, Br, I) participates in t...
We present an updated mechanism for tropospheric halogen (Cl + Br + I) chemistry in the GEOS-Chem gl...
We present a simulation of the global present-day composition of the troposphere which includes the ...
Aircraft and satellite observations indicate the presence of ppt (pptpmol/mol) levels of BrO in the ...
Aircraft and satellite observations indicate the presence of ppt (ppt ≡ pmol/mol) levels of BrO in t...
This study investigates the impact of reactive halogen species (RHS, containing chlorine (Cl), bromi...
This study investigates the impact of reactive halogen species (RHS, containing chlorine (Cl), bromi...
Abstract. This study investigates the impact of halogens on atmospheric chemistry in the tropical tr...
The chemistry of the halogen species bromine and iodine has a range of impacts on tropospheric compo...
Observations and model calculations indicate that highly non-linear multiphase atmospheric processes...
Bromine radicals influence global tropospheric chemistry by depleting ozone and by oxidizing element...
We present a comprehensive simulation of tropospheric chlorine within the GEOS-Chem global 3-D model...
Halogens in the atmosphere chemically destroy ozone. In the troposphere, bromine has higher ozone de...
The chemistry of the halogen species bromine and iodine has a range of impacts on tropospheric compo...
International audienceThe atmospheric chemistry of halogenated species (Cl, Br, I) participates in t...
International audienceThe atmospheric chemistry of halogenated species (Cl, Br, I) participates in t...
We present an updated mechanism for tropospheric halogen (Cl + Br + I) chemistry in the GEOS-Chem gl...
We present a simulation of the global present-day composition of the troposphere which includes the ...
Aircraft and satellite observations indicate the presence of ppt (pptpmol/mol) levels of BrO in the ...
Aircraft and satellite observations indicate the presence of ppt (ppt ≡ pmol/mol) levels of BrO in t...
This study investigates the impact of reactive halogen species (RHS, containing chlorine (Cl), bromi...
This study investigates the impact of reactive halogen species (RHS, containing chlorine (Cl), bromi...
Abstract. This study investigates the impact of halogens on atmospheric chemistry in the tropical tr...
The chemistry of the halogen species bromine and iodine has a range of impacts on tropospheric compo...
Observations and model calculations indicate that highly non-linear multiphase atmospheric processes...
Bromine radicals influence global tropospheric chemistry by depleting ozone and by oxidizing element...
We present a comprehensive simulation of tropospheric chlorine within the GEOS-Chem global 3-D model...
Halogens in the atmosphere chemically destroy ozone. In the troposphere, bromine has higher ozone de...
The chemistry of the halogen species bromine and iodine has a range of impacts on tropospheric compo...
International audienceThe atmospheric chemistry of halogenated species (Cl, Br, I) participates in t...
International audienceThe atmospheric chemistry of halogenated species (Cl, Br, I) participates in t...