The springtime depletion of tropospheric ozone in the Arctic is known to be caused by active halogen photochemistry resulting from halogen atom precursors emitted from snow, ice, or aerosol surfaces. The role of bromine in driving ozone depletion events (ODEs) has been generally accepted, but much less is known about the role of chlorine radicals in ozone depletion chemistry. While the potential impact of iodine in the High Arctic is more uncertain, there have been indications of active iodine chemistry through observed enhancements in filterable iodide, probable detection of tropospheric IO, and recently, observation of snowpack photochemical production of I<sub>2</sub>. Despite decades of research, significant uncertainty remains regardin...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
The temporary depletion of both tropospheric ozone and gaseous mercury during the Arctic springtime ...
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. ...
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. ...
During the Arctic Tropospheric Ozone Chemistry (ARCTOC) campaigns at Ny-Ålesund, Spitsbergen, the r...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
The temporary depletion of both tropospheric ozone and gaseous mercury during the Arctic springtime ...
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. ...
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. ...
During the Arctic Tropospheric Ozone Chemistry (ARCTOC) campaigns at Ny-Ålesund, Spitsbergen, the r...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
International audienceUnlike bromine, the effect of iodine chemistry on the Arctic surface ozone bud...
The temporary depletion of both tropospheric ozone and gaseous mercury during the Arctic springtime ...
During springtime in the polar regions, unique photochemistry converts inert halide salt ions (e.g. ...