The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) has been performed, within the framework of the ongoing Atmospheric Tracer Transport Model Intercomparison Project (TransCom). Eleven global models or model variants participated, simulating the major natural bromine VSLS, bromoform (CHBr3) and dibromomethane (CH2Br2), over a 20-year period (1993-2012). The overarching goal of TransCom-VSLS was to provide a reconciled model estimate of the stratospheric source gas injection (SGI) of bromine from these gases, to constrain the current measurement-derived range, and to investigate inter-model differences due to emissions and transport processes.Models ran with standardised idealised chemistry, to ...
We use the NASA Goddard Earth Observing System (GEOS) Chemistry Climate Model (GEOSCCM) to quantify ...
We quantify the stratospheric injection of brominated very short-lived substances (VSLS) based on ai...
Oceanic emissions of halogenated very short-lived substances (VSLS) are expected to contribute signi...
The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) ha...
The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) ha...
The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) ha...
The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) ha...
The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) ha...
20 pags, figs13, 8 tabsEmissions of halogenated very short-lived substances (VSLS) are poorly constr...
Emissions of halogenated very short-lived substances (VSLS) are poorly constrained. However, their i...
We quantify the stratospheric injection of brominated very short‐lived substances (VSLS) based on ai...
We quantify the stratospheric injection of brominated very short-lived substances (VSLS) based on a...
Halogenated very short-lived substances (VSLSs), such as bromoform (CHBr3), can be transported to th...
We use the NASA Goddard Earth Observing System (GEOS) Chemistry Climate Model (GEOSCCM) to quantify ...
We quantify the stratospheric injection of brominated very short-lived substances (VSLS) based on ai...
Oceanic emissions of halogenated very short-lived substances (VSLS) are expected to contribute signi...
The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) ha...
The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) ha...
The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) ha...
The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) ha...
The first concerted multi-model intercomparison of halogenated very short-lived substances (VSLS) ha...
20 pags, figs13, 8 tabsEmissions of halogenated very short-lived substances (VSLS) are poorly constr...
Emissions of halogenated very short-lived substances (VSLS) are poorly constrained. However, their i...
We quantify the stratospheric injection of brominated very short‐lived substances (VSLS) based on ai...
We quantify the stratospheric injection of brominated very short-lived substances (VSLS) based on a...
Halogenated very short-lived substances (VSLSs), such as bromoform (CHBr3), can be transported to th...
We use the NASA Goddard Earth Observing System (GEOS) Chemistry Climate Model (GEOSCCM) to quantify ...
We quantify the stratospheric injection of brominated very short-lived substances (VSLS) based on ai...
Oceanic emissions of halogenated very short-lived substances (VSLS) are expected to contribute signi...