Explosive volcanic eruptions can inject sulfur dioxide (SO2) into the stratosphere, which forms stratospheric sulfate aerosol that can significantly impact the climate. The radiative forcing of an eruption depends on several eruption source parameters: the mass of SO2 emitted, the latitude and the emission height. However, the combined effects of these parameters are not well understood. Reconstructions of historic volcanic radiative forcing, which are essential for understanding the role of volcanism on climate variability, are derived from ice core sulfate records, but rely on relationships between ice sheet deposition, stratospheric aerosol burdens and radiative forcing from limited observations. The aim of this thesis is to understand t...
The relationship between volcanic stratospheric aerosol optical depth (SAOD) and volcanic radiative ...
Explosive volcanic eruptions can inject huge quantities of ash and sulfur dioxide (SO2) into the str...
The relationship between volcanic stratospheric aerosol optical depth (SAOD) and volcanic radiative ...
Explosive volcanic eruptions can inject sulfur dioxide (SO2) into the stratosphere, which forms stra...
Explosive volcanic eruptions can inject sulfur dioxide (SO2) into the stratosphere, which forms stra...
Explosive volcanic eruptions can inject sulfur dioxide (SO2) into the stratosphere, which forms stra...
Reconstructions of volcanic aerosol radiative forcing are required to understand past climate variab...
Abstract: Reconstructions of volcanic aerosol radiative forcing are required to understand past clim...
The radiative forcing caused by a volcanic eruption is dependent on several eruption source paramete...
©2018. The Authors. The radiative forcing caused by a volcanic eruption is dependent on several eru...
The radiative forcing caused by a volcanic eruption is dependent on several eruption source paramete...
Abstract: Reconstructions of volcanic aerosol radiative forcing are required to understand past clim...
The radiative forcing caused by a volcanic eruption is dependent on several eruption source paramete...
Funder: U.K. China Research and Innovation Partnership FundFunder: National Centre for Atmospheric S...
The data set from this article is available through Deep Blue Data: https://doi.org/10.7302/pz7e-r32...
The relationship between volcanic stratospheric aerosol optical depth (SAOD) and volcanic radiative ...
Explosive volcanic eruptions can inject huge quantities of ash and sulfur dioxide (SO2) into the str...
The relationship between volcanic stratospheric aerosol optical depth (SAOD) and volcanic radiative ...
Explosive volcanic eruptions can inject sulfur dioxide (SO2) into the stratosphere, which forms stra...
Explosive volcanic eruptions can inject sulfur dioxide (SO2) into the stratosphere, which forms stra...
Explosive volcanic eruptions can inject sulfur dioxide (SO2) into the stratosphere, which forms stra...
Reconstructions of volcanic aerosol radiative forcing are required to understand past climate variab...
Abstract: Reconstructions of volcanic aerosol radiative forcing are required to understand past clim...
The radiative forcing caused by a volcanic eruption is dependent on several eruption source paramete...
©2018. The Authors. The radiative forcing caused by a volcanic eruption is dependent on several eru...
The radiative forcing caused by a volcanic eruption is dependent on several eruption source paramete...
Abstract: Reconstructions of volcanic aerosol radiative forcing are required to understand past clim...
The radiative forcing caused by a volcanic eruption is dependent on several eruption source paramete...
Funder: U.K. China Research and Innovation Partnership FundFunder: National Centre for Atmospheric S...
The data set from this article is available through Deep Blue Data: https://doi.org/10.7302/pz7e-r32...
The relationship between volcanic stratospheric aerosol optical depth (SAOD) and volcanic radiative ...
Explosive volcanic eruptions can inject huge quantities of ash and sulfur dioxide (SO2) into the str...
The relationship between volcanic stratospheric aerosol optical depth (SAOD) and volcanic radiative ...