Over the past decades, the geographical distribution of emissions of substances that alter the atmospheric energy balance has changed due to economic growth and pollution regulations. Here, we show the resulting changes to aerosol and ozone abundances and their radiative forcing, using recently updated emission data for the period 1990–2015, as simulated by seven global atmospheric composition models. The models broadly reproduce the large-scale changes in surface aerosol and ozone based on observations (e.g., −1 to −3 %/yr in aerosols over US and Europe). The global mean radiative forcing due to ozone and aerosols changes over the 1990–2015 period increased by about +0.2 W m−2, with approximately 1/3 due to ozone. This increase is stronger...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
Across Europe anthropogenic emissions have changed substantially over recent decades, due in part to...
Changes in atmospheric ozone have occurred since the preindustrial era as a result of increasing ant...
Over the past few decades, the geographical distribution of emissions of substances that alter the a...
Over the past few decades, the geographical distribution of emissions of substances that alter the a...
Over the past few decades, the geographical distribution of emissions of substances that alter the a...
Over the past few decades, the geographical distribution of emissions of substances that alter the a...
Over the past few decades, the geographical distribution of emissions of substances that alter the a...
International audienceGlobal aerosol and ozone distributions and their associated radiative forcings...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
This study assesses the change in anthropogenic aerosol forcing from the mid-1970s to the mid-2000s....
The reliance on global mean radiative forcing as an index of climate change is questionable for high...
This study assesses the change in anthropogenic aerosol forcing from the mid-1970s to the mid-2000s....
Changes in atmospheric ozone have occurred since the preindustrial era as a result of increasing ant...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
Across Europe anthropogenic emissions have changed substantially over recent decades, due in part to...
Changes in atmospheric ozone have occurred since the preindustrial era as a result of increasing ant...
Over the past few decades, the geographical distribution of emissions of substances that alter the a...
Over the past few decades, the geographical distribution of emissions of substances that alter the a...
Over the past few decades, the geographical distribution of emissions of substances that alter the a...
Over the past few decades, the geographical distribution of emissions of substances that alter the a...
Over the past few decades, the geographical distribution of emissions of substances that alter the a...
International audienceGlobal aerosol and ozone distributions and their associated radiative forcings...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
This study assesses the change in anthropogenic aerosol forcing from the mid-1970s to the mid-2000s....
The reliance on global mean radiative forcing as an index of climate change is questionable for high...
This study assesses the change in anthropogenic aerosol forcing from the mid-1970s to the mid-2000s....
Changes in atmospheric ozone have occurred since the preindustrial era as a result of increasing ant...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
Across Europe anthropogenic emissions have changed substantially over recent decades, due in part to...
Changes in atmospheric ozone have occurred since the preindustrial era as a result of increasing ant...