International audienceThe vertical extent and impact of halogen chemistry in the Arctic springtime was investigated through balloon-based measurement of several atmospheric chemical components. Various chemical species, including volatile organic compounds (VOCs), ozone, and elemental mercury, that are modified by halogen chemistry were measured from the surface to ∼300 m during late March through mid-April 2005 in Barrow, Alaska. It is observed that the halogen chemistry appears to be most active in the lowest 100–200 m of the atmosphere. The Hg vertical concentration profiles are consistent with destruction by chemistry that evolves from a species emitted from the snowpack, most likely Br2 and BrCl, and the VOC profiles also demonstrate t...
Ozone is known to be harmful to animals and vegetation, and global ozone concentrations have been in...
Abstract. Volatile organic compound concentration ratios can be used as indicators of halogen chemis...
The return of sunlight in the polar spring leads to the production of reactive halogen species from ...
International audienceThe vertical extent and impact of halogen chemistry in the Arctic springtime w...
International audienceThe vertical extent and impact of halogen chemistry in the Arctic springtime w...
International audienceThe vertical extent and impact of halogen chemistry in the Arctic springtime w...
The involvement of halogen chemistry in the Arctic troposphere has been studied intensely following ...
The temporary depletion of both tropospheric ozone and gaseous mercury during the Arctic springtime ...
Halogen chemistry in the Arctic boundary layer catalytically destroys O3 and impacts the chemical li...
International audienceReactive chlorine and bromine species emitted from snow and aerosols can signi...
International audienceReactive chlorine and bromine species emitted from snow and aerosols can signi...
International audienceReactive chlorine and bromine species emitted from snow and aerosols can signi...
International audienceReactive chlorine and bromine species emitted from snow and aerosols can signi...
Abstract. Reactive halogens are responsible for boundary-layer ozone depletion and mercury depositio...
International audienceReactive chlorine and bromine species emitted from snow and aerosols can signi...
Ozone is known to be harmful to animals and vegetation, and global ozone concentrations have been in...
Abstract. Volatile organic compound concentration ratios can be used as indicators of halogen chemis...
The return of sunlight in the polar spring leads to the production of reactive halogen species from ...
International audienceThe vertical extent and impact of halogen chemistry in the Arctic springtime w...
International audienceThe vertical extent and impact of halogen chemistry in the Arctic springtime w...
International audienceThe vertical extent and impact of halogen chemistry in the Arctic springtime w...
The involvement of halogen chemistry in the Arctic troposphere has been studied intensely following ...
The temporary depletion of both tropospheric ozone and gaseous mercury during the Arctic springtime ...
Halogen chemistry in the Arctic boundary layer catalytically destroys O3 and impacts the chemical li...
International audienceReactive chlorine and bromine species emitted from snow and aerosols can signi...
International audienceReactive chlorine and bromine species emitted from snow and aerosols can signi...
International audienceReactive chlorine and bromine species emitted from snow and aerosols can signi...
International audienceReactive chlorine and bromine species emitted from snow and aerosols can signi...
Abstract. Reactive halogens are responsible for boundary-layer ozone depletion and mercury depositio...
International audienceReactive chlorine and bromine species emitted from snow and aerosols can signi...
Ozone is known to be harmful to animals and vegetation, and global ozone concentrations have been in...
Abstract. Volatile organic compound concentration ratios can be used as indicators of halogen chemis...
The return of sunlight in the polar spring leads to the production of reactive halogen species from ...