International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry-climate models, driven by prescribed levels of halogens and greenhouse gases. There is general agreement among the models that total column ozone reached a minimum around year 2000 at all latitudes, projected to be followed by an increase over the first half of the 21st century. In the second half of the 21st century, ozone is projected to continue increasing, level off, or even decrease depending on the latitude. Separation into partial columns above and below 20 hPa reveals that these latitudinal differences are almost completely caused by differences in the model projections of ozone in the lower stratosphere. At all ...
International audienceProjections of stratospheric ozone from a suite of chemistry-climate models (C...
International audienceProjections of stratospheric ozone from a suite of chemistry-climate models (C...
Recent observations show a significant decrease in lower-stratospheric (LS) ozone concentrations in ...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
The evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry-...
The evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry-...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
The evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry‐...
[1] Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forci...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings...
This chapter discusses the future evolution of stratospheric ozone and its return to historical valu...
International audienceProjections of stratospheric ozone from a suite of chemistry-climate models (C...
International audienceProjections of stratospheric ozone from a suite of chemistry-climate models (C...
International audienceProjections of stratospheric ozone from a suite of chemistry-climate models (C...
Recent observations show a significant decrease in lower-stratospheric (LS) ozone concentrations in ...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
The evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry-...
The evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry-...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
The evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry‐...
[1] Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forci...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings...
This chapter discusses the future evolution of stratospheric ozone and its return to historical valu...
International audienceProjections of stratospheric ozone from a suite of chemistry-climate models (C...
International audienceProjections of stratospheric ozone from a suite of chemistry-climate models (C...
International audienceProjections of stratospheric ozone from a suite of chemistry-climate models (C...
Recent observations show a significant decrease in lower-stratospheric (LS) ozone concentrations in ...