Natural aerosols play a central role in the Earth system. The conversion of dimethyl sulfide to sulfuric acid is the dominant source of oceanic secondary aerosol. Ocean emitted iodine can also produce aerosol. Using a GEOS-Chem model, we present a simulation of iodine aerosol. The simulation compares well with the limited observational data set. Iodine aerosol concentrations are highest in the tropical marine boundary layer (MBL) averaging 5.2 ng (I) m −3 with monthly maximum concentrations of 90 ng (I) m −3. These masses are small compared to sulfate (0.75% of MBL burden, up to 11% regionally) but are more significant compared to dimethyl sulfide sourced sulfate (3% of the MBL burden, up to 101% regionally). In the preindustrial, iodine ae...
We present a global simulation of tropospheric iodine chemistry within the GEOS-Chem chemical transp...
In this work we describe the compilation and homogenization of an extensive dataset of aerosol iodin...
An ocean iodine cycling model is presented, which predicts upper ocean iodine speciation. The model ...
Natural aerosols play a central role in the Earth system. The conversion of dimethyl sulfide to sulf...
Natural aerosols play a central role in the Earth system. The conversion of dimethyl sulfide to sulf...
We have compiled and analyzed a comprehensive data set of field observations of iodine speciation in...
Heterogeneous uptake of hypoiodous acid (HOI), the dominant inorganic iodine species in the marine b...
International audienceA model of iodine chemistry in the marine boundary layer (MBL) has been used t...
We have compiled and analyzed a comprehensive data set of field observations of iodine speciation in...
Naturally occurring bromine- and iodine-containing compounds substantially reduce regional, and poss...
Iodine affects the radiative budget and the oxidative capacity of the atmosphere and is consequently...
We present a global simulation of tropospheric iodine chemistry within the GEOS-Chem chemical transp...
We present a global simulation of tropospheric iodine chemistry within the GEOS-Chem chemical trans...
In this work, we describe the compilation and homogenization of an extensive data set of aerosol iod...
18 pags, 11 figs, 1 tabObservations of gas-phase iodine species were made during a field campaign in...
We present a global simulation of tropospheric iodine chemistry within the GEOS-Chem chemical transp...
In this work we describe the compilation and homogenization of an extensive dataset of aerosol iodin...
An ocean iodine cycling model is presented, which predicts upper ocean iodine speciation. The model ...
Natural aerosols play a central role in the Earth system. The conversion of dimethyl sulfide to sulf...
Natural aerosols play a central role in the Earth system. The conversion of dimethyl sulfide to sulf...
We have compiled and analyzed a comprehensive data set of field observations of iodine speciation in...
Heterogeneous uptake of hypoiodous acid (HOI), the dominant inorganic iodine species in the marine b...
International audienceA model of iodine chemistry in the marine boundary layer (MBL) has been used t...
We have compiled and analyzed a comprehensive data set of field observations of iodine speciation in...
Naturally occurring bromine- and iodine-containing compounds substantially reduce regional, and poss...
Iodine affects the radiative budget and the oxidative capacity of the atmosphere and is consequently...
We present a global simulation of tropospheric iodine chemistry within the GEOS-Chem chemical transp...
We present a global simulation of tropospheric iodine chemistry within the GEOS-Chem chemical trans...
In this work, we describe the compilation and homogenization of an extensive data set of aerosol iod...
18 pags, 11 figs, 1 tabObservations of gas-phase iodine species were made during a field campaign in...
We present a global simulation of tropospheric iodine chemistry within the GEOS-Chem chemical transp...
In this work we describe the compilation and homogenization of an extensive dataset of aerosol iodin...
An ocean iodine cycling model is presented, which predicts upper ocean iodine speciation. The model ...