Ozone is expected to fully recover from the chlorofluorocarbon (CFC) era by the end of the 21st century. Furthermore, because of anthropogenic climate change, a cooler stratosphere decelerates ozone loss reactions and is projected to lead to a super recovery of ozone. We investigate the ozone distribution over the 21st century with four different future scenarios using simulations of the Whole Atmosphere Community Climate Model (WACCM). At the end of the 21st century, the equatorial upper stratosphere has roughly 0.5 to 1.0 ppm more ozone in the scenario with the highest greenhouse gas emissions compared to the conservative scenario. Polar ozone levels exceed those in the pre-CFC era in scenarios that have the highest greenhouse gas emissio...
To understand how greenhouse gas (GHG) emissions may affect future stratospheric ozone, 21st century...
After the well-reported record loss of Arctic stratospheric ozone of up to 38% in the winter 2010–20...
The winter 2019/2020 showed the lowest ozone mixing ratios ever observed in the Arctic winter strato...
Ozone is expected to fully recover from the chlorofluorocarbon (CFC) era by the end of the 21st cent...
In the Arctic stratosphere, the combination of chemical ozone depletion by halogenated ozone-depleti...
[1] Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forci...
As ozone depleting substances decline, stratospheric ozone is displaying signs of healing in the Ant...
International audiencePast stratospheric ozone depletion has acted to cool the Earth's surface. As t...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
Energetic electron precipitation (EEP) is an important source of polar nitrogen oxides (NOx) in the ...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
Antarctic stratospheric ozone depletion has been associated with an observed downward trend in tropo...
Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are a...
Changes in stratospheric ozone concentrations and increasing concentrations of greenhouse gases (GHG...
To understand how greenhouse gas (GHG) emissions may affect future stratospheric ozone, 21st century...
After the well-reported record loss of Arctic stratospheric ozone of up to 38% in the winter 2010–20...
The winter 2019/2020 showed the lowest ozone mixing ratios ever observed in the Arctic winter strato...
Ozone is expected to fully recover from the chlorofluorocarbon (CFC) era by the end of the 21st cent...
In the Arctic stratosphere, the combination of chemical ozone depletion by halogenated ozone-depleti...
[1] Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forci...
As ozone depleting substances decline, stratospheric ozone is displaying signs of healing in the Ant...
International audiencePast stratospheric ozone depletion has acted to cool the Earth's surface. As t...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
Energetic electron precipitation (EEP) is an important source of polar nitrogen oxides (NOx) in the ...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
Antarctic stratospheric ozone depletion has been associated with an observed downward trend in tropo...
Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are a...
Changes in stratospheric ozone concentrations and increasing concentrations of greenhouse gases (GHG...
To understand how greenhouse gas (GHG) emissions may affect future stratospheric ozone, 21st century...
After the well-reported record loss of Arctic stratospheric ozone of up to 38% in the winter 2010–20...
The winter 2019/2020 showed the lowest ozone mixing ratios ever observed in the Arctic winter strato...