The atmospheric chemistry of iodine and bromine in Polar regions is of interest due to the key role of halogens in many atmospheric processes, particularly tropospheric ozone destruction. Bromine is emitted from the open ocean but is enriched above first-year sea ice during springtime bromine explosion events, whereas iodine emission is attributed to biological communities in the open ocean and hosted by sea ice. It has been previously demonstrated that bromine and iodine are present in Antarctic ice over glacial-interglacial cycles. Here we investigate seasonal variability of bromine and iodine in polar snow and ice, to evaluate their emission, transport and deposition in Antarctica and the Arctic and better understand potential links to s...
As the intricacies of paleoclimate dynamics are explored, it is becoming understood that sea-ice var...
The Law Dome site is ideal for the evaluation of sea ice proxies due to its location near to the Ant...
The role of sea ice in the Earth climate system is still under debate, although it is known to influ...
The atmospheric chemistry of iodine and bromine in polar regions is of interest due to the key role ...
The atmospheric chemistry of iodine and bromine in Polar regions is of interest due to the key role ...
Halogen chemistry in the polar regions occurs through the release of halogen elements from different...
Sea ice is an important parameter in the climate system and its changes impact upon the polar albedo...
The halogens atmospheric chemistry has received increased attention in the last twenty years since t...
Halogen chemistry in the polar regions occurs through the release of sea salt rich aerosols from sea...
Halogen chemistry in the Arctic boundary layer catalytically destroys O3 and impacts the chemical li...
Sea ice is an integral part of the earth's climate system because it affects planetary albedo, sea-s...
8 pags, 8 figs, 2 tabsDuring polar springtime, active bromine drives ozone, a greenhouse gas, to nea...
Halogens influence the oxidizing capacity of Earth’s troposphere, and iodine oxides form ultrafine a...
As the intricacies of paleoclimate dynamics are explored, it is becoming understood that sea-ice var...
The Law Dome site is ideal for the evaluation of sea ice proxies due to its location near to the Ant...
The role of sea ice in the Earth climate system is still under debate, although it is known to influ...
The atmospheric chemistry of iodine and bromine in polar regions is of interest due to the key role ...
The atmospheric chemistry of iodine and bromine in Polar regions is of interest due to the key role ...
Halogen chemistry in the polar regions occurs through the release of halogen elements from different...
Sea ice is an important parameter in the climate system and its changes impact upon the polar albedo...
The halogens atmospheric chemistry has received increased attention in the last twenty years since t...
Halogen chemistry in the polar regions occurs through the release of sea salt rich aerosols from sea...
Halogen chemistry in the Arctic boundary layer catalytically destroys O3 and impacts the chemical li...
Sea ice is an integral part of the earth's climate system because it affects planetary albedo, sea-s...
8 pags, 8 figs, 2 tabsDuring polar springtime, active bromine drives ozone, a greenhouse gas, to nea...
Halogens influence the oxidizing capacity of Earth’s troposphere, and iodine oxides form ultrafine a...
As the intricacies of paleoclimate dynamics are explored, it is becoming understood that sea-ice var...
The Law Dome site is ideal for the evaluation of sea ice proxies due to its location near to the Ant...
The role of sea ice in the Earth climate system is still under debate, although it is known to influ...