Observations are reported of HClO3 and HClO4 in the atmosphere and their widespread occurrence over the pan-Arctic during spring, providing further insights into atmospheric chlorine cycling in the polar environment.Chlorine radicals are strong atmospheric oxidants known to play an important role in the depletion of surface ozone and the degradation of methane in the Arctic troposphere. Initial oxidation processes of chlorine produce chlorine oxides, and it has been speculated that the final oxidation steps lead to the formation of chloric (HClO3) and perchloric (HClO4) acids, although these two species have not been detected in the atmosphere. Here, we present atmospheric observations of gas-phase HClO3 and HClO4. Significant levels of HCl...
During the Arctic Tropospheric Ozone Chemistry (ARCTOC) campaigns at Ny-Ålesund, Spitsbergen, the r...
Halogen chemistry plays an important role in spring time ozone and mercury depletion events (ODEs an...
Highly reactive trace halogen radicals in the atmosphere can significantly impact air quality and co...
The temporary depletion of both tropospheric ozone and gaseous mercury during the Arctic springtime ...
The involvement of halogen chemistry in the Arctic troposphere has been studied intensely following ...
The photochemically-induced destruction of ground-level Arctic ozone in the Arctic occurs at the ons...
Chlorine radicals are strong atmospheric oxidants known to play an important role in the depletion o...
Halogen chemistry in the Arctic boundary layer catalytically destroys O3 and impacts the chemical li...
Key to understanding the chlorine chemistry in the polar stratosphere is the measurement of polar st...
The Arctic winter 2015/16 was characterized by cold stratospheric temperatures. Here we present a co...
The Arctic winter 2015/16 was characterized by cold stratospheric temperatures. Here we present a co...
During springtime in the polar regions, unique photochemistry converts inert halide salt ions (e.g. ...
During springtime in the polar regions, unique photochemistry converts inert halide salt ions (e.g. ...
Activated chlorine compounds in the polar winter stratosphere drive catalytic cycles that deplete oz...
During springtime in the polar regions, unique photochemistry converts inert halide salt ions (e.g. ...
During the Arctic Tropospheric Ozone Chemistry (ARCTOC) campaigns at Ny-Ålesund, Spitsbergen, the r...
Halogen chemistry plays an important role in spring time ozone and mercury depletion events (ODEs an...
Highly reactive trace halogen radicals in the atmosphere can significantly impact air quality and co...
The temporary depletion of both tropospheric ozone and gaseous mercury during the Arctic springtime ...
The involvement of halogen chemistry in the Arctic troposphere has been studied intensely following ...
The photochemically-induced destruction of ground-level Arctic ozone in the Arctic occurs at the ons...
Chlorine radicals are strong atmospheric oxidants known to play an important role in the depletion o...
Halogen chemistry in the Arctic boundary layer catalytically destroys O3 and impacts the chemical li...
Key to understanding the chlorine chemistry in the polar stratosphere is the measurement of polar st...
The Arctic winter 2015/16 was characterized by cold stratospheric temperatures. Here we present a co...
The Arctic winter 2015/16 was characterized by cold stratospheric temperatures. Here we present a co...
During springtime in the polar regions, unique photochemistry converts inert halide salt ions (e.g. ...
During springtime in the polar regions, unique photochemistry converts inert halide salt ions (e.g. ...
Activated chlorine compounds in the polar winter stratosphere drive catalytic cycles that deplete oz...
During springtime in the polar regions, unique photochemistry converts inert halide salt ions (e.g. ...
During the Arctic Tropospheric Ozone Chemistry (ARCTOC) campaigns at Ny-Ålesund, Spitsbergen, the r...
Halogen chemistry plays an important role in spring time ozone and mercury depletion events (ODEs an...
Highly reactive trace halogen radicals in the atmosphere can significantly impact air quality and co...