Reactive iodine plays a key role in determining the oxidation capacity, or cleansing capacity, of the atmosphere in addition to being implicated in the formation of new particles in the marine boundary layer. The postulation that heterogeneous cycling of reactive iodine on aerosols may significantly influence the lifetime of ozone in the troposphere not only remains poorly understood but also heretofore has never been observed or quantified in the field. Here, we report direct ambient observations of hypoiodous acid (HOI) and heterogeneous recycling of interhalogen product species (i.e., iodine monochloride [ICl] and iodine monobromide [IBr]) in a midlatitude coastal environment. Significant levels of ICl and IBr with mean daily maxima of 4...
Iodine affects the radiative budget and the oxidative capacity of the atmosphere and is consequently...
Emitted mainly by the oceans, iodine is a halogen compound important for atmospheric chemistry due t...
The speciation of iodine in atmospheric aerosol is currently poorly understood. Models predict negli...
Reactive iodine plays a key role in determining the oxidation capacity, or cleansing capacity, of th...
10 pags. 4 figs.Heterogeneous uptake of hypoiodous acid (HOI), the dominant inorganic iodine species...
Despite the potential influence of iodine chemistry on the oxidizing capacity of the troposphere, re...
A detailed set of reactions treating the gas and aqueous phase chemistry of the most important iodin...
Ocean emissions of inorganic and organic iodine compounds drive the biogeochemical cycle of iodine a...
Naturally occurring bromine- and iodine-containing compounds substantially reduce regional, and poss...
Iodine is a reactive trace element in atmospheric chemistry that destroys ozone and nucleates partic...
Ocean emissions of inorganic and organic iodine compounds drive the biogeochemical cycle of iodine a...
Iodine has a complex chemistry in aerosols in the marine boundary layer (MBL), and is involved in bo...
We have compiled and analyzed a comprehensive data set of field observations of iodine speciation in...
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...
Iodine affects the radiative budget and the oxidative capacity of the atmosphere and is consequently...
Emitted mainly by the oceans, iodine is a halogen compound important for atmospheric chemistry due t...
The speciation of iodine in atmospheric aerosol is currently poorly understood. Models predict negli...
Reactive iodine plays a key role in determining the oxidation capacity, or cleansing capacity, of th...
10 pags. 4 figs.Heterogeneous uptake of hypoiodous acid (HOI), the dominant inorganic iodine species...
Despite the potential influence of iodine chemistry on the oxidizing capacity of the troposphere, re...
A detailed set of reactions treating the gas and aqueous phase chemistry of the most important iodin...
Ocean emissions of inorganic and organic iodine compounds drive the biogeochemical cycle of iodine a...
Naturally occurring bromine- and iodine-containing compounds substantially reduce regional, and poss...
Iodine is a reactive trace element in atmospheric chemistry that destroys ozone and nucleates partic...
Ocean emissions of inorganic and organic iodine compounds drive the biogeochemical cycle of iodine a...
Iodine has a complex chemistry in aerosols in the marine boundary layer (MBL), and is involved in bo...
We have compiled and analyzed a comprehensive data set of field observations of iodine speciation in...
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...
Iodine affects the radiative budget and the oxidative capacity of the atmosphere and is consequently...
Emitted mainly by the oceans, iodine is a halogen compound important for atmospheric chemistry due t...
The speciation of iodine in atmospheric aerosol is currently poorly understood. Models predict negli...