We present for the first time a self-consistent methodology connecting volcanological field data to global climate model estimates for a regional time series of explosive volcanic events. Using the petrologic method, we estimated SO2 emissions from 36 detected Plinian volcanic eruptions occurring at the Central American Volcanic Arc (CAVA) during the past 200,000 years. Together with simple parametrized relationships collected from past studies, we derive estimates of global maximum volcanic aerosol optical depth (AOD) and radiative forcing (RF) describing the effect of each eruption on radiation reaching the Earth’s surface. In parallel, AOD and RF time series for selected CAVA eruptions are simulated with the global aerosol model MAECHAM5...
The supereruption of Los Chocoyos (14.6°N, 91.2°W) in Guatemala ∼84kyr ago was one of the largest vo...
The evolution of volcanic sulfur, stratospheric composition and radiative forcing following explosiv...
The relationship between volcanic stratospheric aerosol optical depth (SAOD) and volcanic radiative ...
This study gives an overview of the climate effects of explosive volcanic eruptions at the Central A...
Using volcanic sulfur dioxide emissions in an aerosol-climate model we derive a time-series of globa...
Explosive volcanic eruptions can inject sulfur dioxide (SO2) into the stratosphere, which forms stra...
A simple physical model of the atmospheric effects of large explosive volcanic eruptions is develope...
As the understanding and representation of the impacts of volcanic eruptions on climate have improve...
Both explosive volcanic eruptions, which emit sulfur dioxide into the stratosphere, and stratospheri...
Explosive volcanism can release large amounts of particles and gases into the atmosphere. Sulfuric a...
Both explosive volcanic eruptions, which emit sulfur dioxide into the stratosphere, and stratospheri...
Volcanic eruptions eject largeamounts of materials into the atmosphere, which can have an impact on ...
Abstract: Reconstructions of volcanic aerosol radiative forcing are required to understand past clim...
An 8 year volcanic SO2 emission inventory for 2005–2012 is obtained based on satellite measurements ...
An 8 year volcanic SO2 emission inventory for 2005-2012 is obtained based on satellite measurements ...
The supereruption of Los Chocoyos (14.6°N, 91.2°W) in Guatemala ∼84kyr ago was one of the largest vo...
The evolution of volcanic sulfur, stratospheric composition and radiative forcing following explosiv...
The relationship between volcanic stratospheric aerosol optical depth (SAOD) and volcanic radiative ...
This study gives an overview of the climate effects of explosive volcanic eruptions at the Central A...
Using volcanic sulfur dioxide emissions in an aerosol-climate model we derive a time-series of globa...
Explosive volcanic eruptions can inject sulfur dioxide (SO2) into the stratosphere, which forms stra...
A simple physical model of the atmospheric effects of large explosive volcanic eruptions is develope...
As the understanding and representation of the impacts of volcanic eruptions on climate have improve...
Both explosive volcanic eruptions, which emit sulfur dioxide into the stratosphere, and stratospheri...
Explosive volcanism can release large amounts of particles and gases into the atmosphere. Sulfuric a...
Both explosive volcanic eruptions, which emit sulfur dioxide into the stratosphere, and stratospheri...
Volcanic eruptions eject largeamounts of materials into the atmosphere, which can have an impact on ...
Abstract: Reconstructions of volcanic aerosol radiative forcing are required to understand past clim...
An 8 year volcanic SO2 emission inventory for 2005–2012 is obtained based on satellite measurements ...
An 8 year volcanic SO2 emission inventory for 2005-2012 is obtained based on satellite measurements ...
The supereruption of Los Chocoyos (14.6°N, 91.2°W) in Guatemala ∼84kyr ago was one of the largest vo...
The evolution of volcanic sulfur, stratospheric composition and radiative forcing following explosiv...
The relationship between volcanic stratospheric aerosol optical depth (SAOD) and volcanic radiative ...