Jean‐Sébastien Landry
Biographic Data
| ID | 7997700 |
|---|---|
| NAME | Jean‐Sébastien Landry |
| GIVEN NAMES | Jean‐Sébastien |
| FAMILY NAME | Landry |
| SIGNATURE | LANDRY J S |
| AFFILIATIONS | Université de Sherbrooke |
| ORCID | 0000-0003-4524-1644 |
| VERIFIED | Yes |
| TOTAL WORKS | 2 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 2 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2017 |
| LATEST PUBLICATION YEAR | 2018 |
| H-INDEX | 0 |
Climate and health implications of future aerosol emission scenarios
Anthropogenic aerosols have a net cooling effect on climate and also cause adverse health effects by degrading air quality. In this global-scale sensitivity study, we used a combination of the aerosol-climate model ECHAM-HAMMOZ and the University of Victoria Earth System Climate Model to assess the climate and health effects of aerosols emissions from three Representative Concentration Pathways (RCP2.6, RCP4.5, and RCP8.5) and two new (LOW and HI…
Carbon cycle and climate effects of forcing from fire-emitted aerosols
Aerosols emitted by landscape fires affect many climatic processes. Here, we combined an aerosol–climate model and a coupled climate–carbon model to study the carbon cycle and climate effects caused by fire-emitted aerosols (FEA) forcing at the top of the atmosphere and at the surface. This forcing (‘best guess’ present-day values of −0.10 and −1.3 W m ^−2 at the top of the atmosphere and surface, respectively) had a predominant cooling influence…
No prominent works on this page.
Carbon cycle and climate effects of forcing from fire-emitted aerosols
Aerosols emitted by landscape fires affect many climatic processes. Here, we combined an aerosol–climate model and a coupled climate–carbon model to study the carbon cycle and climate effects caused by fire-emitted aerosols (FEA) forcing at the top of the atmosphere and at the surface. This forcing (‘best guess’ present-day values of −0.10 and −1.3 W m ^−2 at the top of the atmosphere and surface, respectively) had a predominant cooling influence…
Climate and health implications of future aerosol emission scenarios
Anthropogenic aerosols have a net cooling effect on climate and also cause adverse health effects by degrading air quality. In this global-scale sensitivity study, we used a combination of the aerosol-climate model ECHAM-HAMMOZ and the University of Victoria Earth System Climate Model to assess the climate and health effects of aerosols emissions from three Representative Concentration Pathways (RCP2.6, RCP4.5, and RCP8.5) and two new (LOW and HI…
Atmospheric chemistry and aerosols (2 works) · Atmospheric sciences (2 works) · Climate change (2 works) · Climate model (2 works) · Climatology (2 works) · Ecology (2 works) · Environmental Science (2 works) · Forcing (mathematics (2 works) · Geography (2 works) · Greenhouse gas (2 works)