Jorge L Sarmiento
Biographic Data
| ID | 6818841 |
|---|---|
| NAME | Jorge L Sarmiento |
| GIVEN NAMES | Jorge L |
| FAMILY NAME | Sarmiento |
| SIGNATURE | SARMIENTO J L |
| AFFILIATIONS | Princeton University |
| ORCID | 0000-0001-5219-2604 |
| VERIFIED | Yes |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2005 |
| LATEST PUBLICATION YEAR | 2013 |
| H-INDEX | 0 |
The declining uptake rate of atmospheric CO 2 by land and ocean sinks
Through 1959–2012, an airborne fraction (AF) of 44% of total anthropogenic CO2 emissions remained in the atmosphere, with the rest being taken up by land and ocean CO2 sinks. Understanding of this uptake is critical because it greatly alleviates the emissions reductions required for climate mitigation. An observable quantity that reflects sink properties more directly than the AF is the CO2 sink rate (kS), the combined land-ocean CO2 sink flux pe…
Large‐scale redistribution of maximum fisheries catch potential in the global ocean under climate change
Previous projection of climate change impacts on global food supply focuses solely on production from terrestrial biomes, ignoring the large contribution of animal protein from marine capture fisheries. Here, we project changes in global catch potential for 1066 species of exploited marine fish and invertebrates from 2005 to 2055 under climate change scenarios. We show that climate change may lead to large‐scale redistribution of global catch pot…
Trends in the sources and sinks of carbon dioxide
Anthropogenic ocean acidification over the twenty-first century and its impact on calcifying organisms
No prominent works on this page.
Anthropogenic ocean acidification over the twenty-first century and its impact on calcifying organisms
Trends in the sources and sinks of carbon dioxide
Large‐scale redistribution of maximum fisheries catch potential in the global ocean under climate change
Previous projection of climate change impacts on global food supply focuses solely on production from terrestrial biomes, ignoring the large contribution of animal protein from marine capture fisheries. Here, we project changes in global catch potential for 1066 species of exploited marine fish and invertebrates from 2005 to 2055 under climate change scenarios. We show that climate change may lead to large‐scale redistribution of global catch pot…
The declining uptake rate of atmospheric CO 2 by land and ocean sinks
Through 1959–2012, an airborne fraction (AF) of 44% of total anthropogenic CO2 emissions remained in the atmosphere, with the rest being taken up by land and ocean CO2 sinks. Understanding of this uptake is critical because it greatly alleviates the emissions reductions required for climate mitigation. An observable quantity that reflects sink properties more directly than the AF is the CO2 sink rate (kS), the combined land-ocean CO2 sink flux pe…
Climate change (4 works) · Environmental Science (4 works) · Biology (3 works) · Carbon dioxide (3 works) · Geography (3 works) · Geology (3 works) · Oceanography (3 works) · Atmospheric and Environmental Gas Dynamics (2 works) · Atmospheric sciences (2 works) · Carbon dioxide in Earth's atmosphere (2 works)