Naturally occurring bromine- and iodine-containing compounds substantially reduce regional, and possibly even global, tropospheric ozone levels. As such, these halogen gases reduce the global warming effects of ozone in the troposphere, and its capacity to initiate the chemical removal of hydrocarbons such as methane. The majority of halogen-related surface ozone destruction is attributable to iodine chemistry. So far, organic iodine compounds have been assumed to serve as the main source of oceanic iodine emissions. However, known organic sources of atmospheric iodine cannot account for gas-phase iodine oxide concentrations in the lower troposphere over the tropical oceans. Here, we quantify gaseous emissions of inorganic iodine following ...
Iodine is a reactive trace element in atmospheric chemistry that destroys ozone and nucleates partic...
10 pags, 4 figs. -- Supplementary material for this article is available at https://science.org/doi/...
We have compiled and analyzed a comprehensive data set of field observations of iodine speciation in...
Recent studies indicated that gaseous halogens mediate key tropospheric chemical processes. The incl...
Halides are incorporated into aerosol sea spray, where they start the catalytic destruction of ozone...
Iodine chemistry has noteworthy impacts on the oxidising capacity of the marine boundary layer (MBL)...
14 pags., 7 figs., 4 tabs.Iodine compounds destroy ozone (O3) in the global troposphere and form new...
The marine iodine cycle has signifcant impacts on air quality and atmospheric chemistry. Specifcally...
Iodine is a critical trace element involved in many diverse and important processes in the Earth sys...
The marine iodine cycle has signifcant impacts on air quality and atmospheric chemistry. Specifcally...
Naturally emitted from the oceans, iodine compounds efficiently destroy atmospheric ozone and reduce...
Reaction with iodide (I-) at the sea surface is an important sink for atmospheric ozone, and causes ...
International audienceA model of iodine chemistry in the marine boundary layer (MBL) has been used t...
Observations of halogen oxides, ozone, meteorological parameters, and physical and biogeochemical wa...
Inorganic iodine plays a significant role in the photochemistry of the marine boundary layer, but th...
Iodine is a reactive trace element in atmospheric chemistry that destroys ozone and nucleates partic...
10 pags, 4 figs. -- Supplementary material for this article is available at https://science.org/doi/...
We have compiled and analyzed a comprehensive data set of field observations of iodine speciation in...
Recent studies indicated that gaseous halogens mediate key tropospheric chemical processes. The incl...
Halides are incorporated into aerosol sea spray, where they start the catalytic destruction of ozone...
Iodine chemistry has noteworthy impacts on the oxidising capacity of the marine boundary layer (MBL)...
14 pags., 7 figs., 4 tabs.Iodine compounds destroy ozone (O3) in the global troposphere and form new...
The marine iodine cycle has signifcant impacts on air quality and atmospheric chemistry. Specifcally...
Iodine is a critical trace element involved in many diverse and important processes in the Earth sys...
The marine iodine cycle has signifcant impacts on air quality and atmospheric chemistry. Specifcally...
Naturally emitted from the oceans, iodine compounds efficiently destroy atmospheric ozone and reduce...
Reaction with iodide (I-) at the sea surface is an important sink for atmospheric ozone, and causes ...
International audienceA model of iodine chemistry in the marine boundary layer (MBL) has been used t...
Observations of halogen oxides, ozone, meteorological parameters, and physical and biogeochemical wa...
Inorganic iodine plays a significant role in the photochemistry of the marine boundary layer, but th...
Iodine is a reactive trace element in atmospheric chemistry that destroys ozone and nucleates partic...
10 pags, 4 figs. -- Supplementary material for this article is available at https://science.org/doi/...
We have compiled and analyzed a comprehensive data set of field observations of iodine speciation in...