We have developed a detailed chemical scheme for the degradation of the short-lived source gases bromoform (CHBr3) and dibromomethane (CH2Br2) and implemented it in the TOMCAT/SLIMCAT three-dimensional (3-D) chemical transport model (CTM). The CTM has been used to predict the distribution of the two source gases (SGs) and 11 of their organic product gases (PGs). These first global calculations of the organic PGs show that their abundance is small. The longest lived organic PGs are CBr 2O and CHBrO, but their peak tropospheric abundance relative to the surface volume mixing ratio (vmr) of the SGs is less than 5%. We calculate their mean local tropospheric lifetimes in the tropics to be ∼7 and ∼2 days (due to photolysis), respectively. Theref...
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...
We have developed a detailed chemical scheme for the degradation of the short-lived source gases bro...
We have developed a detailed chemical scheme for the degradation of the short-lived source gases bro...
We have developed a detailed chemical scheme for the degradation of the short-lived source gases bro...
A three-dimensional (3-D) chemical transport model (CTM) has been used to study the tropospheric che...
We use the NASA Goddard Earth Observing System (GEOS) Chemistry Climate Model (GEOSCCM) to quantify ...
We have used a global three-dimensional chemical transport model to quantify the impact of the very ...
International audienceDetailed chemical reaction schemes for the atmospheric degradations of the ver...
International audienceBromoform is one of the most abundant halogenated Very Short-Lived Substances ...
Recent in situ and satellite measurements suggest a contribution of similar to 5 pptv to stratospher...
Emissions of halogenated very short-lived substances (VSLS) are poorly constrained. However, their i...
International audienceTwo brominated VSLS, bromoform (CHBr 3) and dibromomethane (CH 2 Br 2), which ...
Recent in situ and satellite measurements suggest a contribution of ~5 pptv to stratospheric inorgan...
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...
We have developed a detailed chemical scheme for the degradation of the short-lived source gases bro...
We have developed a detailed chemical scheme for the degradation of the short-lived source gases bro...
We have developed a detailed chemical scheme for the degradation of the short-lived source gases bro...
A three-dimensional (3-D) chemical transport model (CTM) has been used to study the tropospheric che...
We use the NASA Goddard Earth Observing System (GEOS) Chemistry Climate Model (GEOSCCM) to quantify ...
We have used a global three-dimensional chemical transport model to quantify the impact of the very ...
International audienceDetailed chemical reaction schemes for the atmospheric degradations of the ver...
International audienceBromoform is one of the most abundant halogenated Very Short-Lived Substances ...
Recent in situ and satellite measurements suggest a contribution of similar to 5 pptv to stratospher...
Emissions of halogenated very short-lived substances (VSLS) are poorly constrained. However, their i...
International audienceTwo brominated VSLS, bromoform (CHBr 3) and dibromomethane (CH 2 Br 2), which ...
Recent in situ and satellite measurements suggest a contribution of ~5 pptv to stratospheric inorgan...
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...