Jean‐pierre Gattuso
Biographic Data
| ID | 3420965 |
|---|---|
| NAME | Jean‐pierre Gattuso |
| GIVEN NAMES | Jean‐pierre |
| FAMILY NAME | Gattuso |
| SIGNATURE | GATTUSO J P |
| AFFILIATIONS | Centre National de la Recherche Scientifique |
| ORCID | 0000-0002-4533-4114 |
| VERIFIED | Yes |
| TOTAL WORKS | 10 |
| TOTAL CITATIONS | 8 |
| AUTHOR COUNT | 10 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2012 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 2 |
Monitoring, reporting, and verification of marine carbon dioxide removal: Exploring scientific consensus and divergences across continents
Marine Carbon Dioxide Removal (mCDR) approaches are increasingly considered for climate change mitigation as a supplement to rapid emissions reduction. However, it is still unclear if mCDR approaches could be effective, safe, and accountable. A critical requirement for mCDR to work, potentially, is robust monitoring, reporting, and verification (MRV) of greenhouse gas(es) removed through mCDR activities. MRV frameworks and protocols are currently…
Effective carbon dioxide removal requires a One-Earth approach
L’Océan et la recherche scientifique à l’épreuve des tensions géopolitiques. Les leçons de la 3 e Conférence des Nations unies sur l’Océan
Limited understanding of basic ocean processes is hindering progress in marine carbon dioxide removal
Are we ready for ocean acidification? A framework for assessing and advancing policy readiness
Effective climate policy that addresses carbon dioxide emissions is essential to minimizing and addressing the impacts of ocean acidification (OA). Here we present a framework to assess the readiness of OA policy, using coral reefs as a focal system. Six dimensions encompass comprehensive preparation by ecosystems and societies for the impacts of OA and other anthropogenic hazards: (1) climate protection measures, (2) OA literacy, (3) area-based …
Estimating the global risk of anthropogenic climate change
Risks to future atoll habitability from climate‐driven environmental changes
Recent assessments of future risk to atoll habitability have focused on island erosion and submergence, and have overlooked the effects of other climate‐related drivers, as well as differences between ocean basins and island types. Here we investigate the cumulative risk arising from multiple drivers (sea‐level rise; changes in rainfall, ocean–atmosphere oscillations and tropical cyclone intensity; ocean warming and acidification) to five Habitab…
Rebuilding marine life
Sustainable Development Goal 14 of the United Nations aims to “conserve and sustainably use the oceans, seas and marine resources for sustainable development”. Achieving this goal will require rebuilding the marine life-support systems that deliver the many benefits that society receives from a healthy ocean. Here we document the recovery of marine populations, habitats and ecosystems following past conservation interventions. Recovery rates acro…
Contrasting futures for ocean and society from different anthropogenic CO 2 emissions scenarios
Carbon emissions and their ocean impacts Anthropogenic CO 2 emissions directly affect atmospheric chemistry but also have a strong influence on the oceans. Gattuso et al. review how the physics, chemistry, and ecology of the oceans might be affected based on two CO 2 emission trajectories: one business as usual and one with aggressive reductions. Ocean warming, acidification, sea-level rise, and the expansion of oxygen minimum zones will continue…
Future biological and ecosystem impacts of ocean acidification and their socioeconomic-policy implications
Anthropogenic carbon dioxide (CO2) emissions to the atmosphere and subsequent uptake by the ocean are changing seawater chemistry, a process known as ocean acidification. Research indicates that as ocean acidification continues, reflecting increasing CO2 emissions, it is likely that although some species will be tolerant it will impact many marine organisms and processes, including composition of communities and food webs. Whilst there may be loc…
Risks to future atoll habitability from climate‐driven environmental changes
Recent assessments of future risk to atoll habitability have focused on island erosion and submergence, and have overlooked the effects of other climate‐related drivers, as well as differences between ocean basins and island types. Here we investigate the cumulative risk arising from multiple drivers (sea‐level rise; changes in rainfall, ocean–atmosphere oscillations and tropical cyclone intensity; ocean warming and acidification) to five Habitab…
Future biological and ecosystem impacts of ocean acidification and their socioeconomic-policy implications
Anthropogenic carbon dioxide (CO2) emissions to the atmosphere and subsequent uptake by the ocean are changing seawater chemistry, a process known as ocean acidification. Research indicates that as ocean acidification continues, reflecting increasing CO2 emissions, it is likely that although some species will be tolerant it will impact many marine organisms and processes, including composition of communities and food webs. Whilst there may be loc…
Future biological and ecosystem impacts of ocean acidification and their socioeconomic-policy implications
Anthropogenic carbon dioxide (CO2) emissions to the atmosphere and subsequent uptake by the ocean are changing seawater chemistry, a process known as ocean acidification. Research indicates that as ocean acidification continues, reflecting increasing CO2 emissions, it is likely that although some species will be tolerant it will impact many marine organisms and processes, including composition of communities and food webs. Whilst there may be loc…
Contrasting futures for ocean and society from different anthropogenic CO 2 emissions scenarios
Carbon emissions and their ocean impacts Anthropogenic CO 2 emissions directly affect atmospheric chemistry but also have a strong influence on the oceans. Gattuso et al. review how the physics, chemistry, and ecology of the oceans might be affected based on two CO 2 emission trajectories: one business as usual and one with aggressive reductions. Ocean warming, acidification, sea-level rise, and the expansion of oxygen minimum zones will continue…
Rebuilding marine life
Sustainable Development Goal 14 of the United Nations aims to “conserve and sustainably use the oceans, seas and marine resources for sustainable development”. Achieving this goal will require rebuilding the marine life-support systems that deliver the many benefits that society receives from a healthy ocean. Here we document the recovery of marine populations, habitats and ecosystems following past conservation interventions. Recovery rates acro…
Estimating the global risk of anthropogenic climate change
Risks to future atoll habitability from climate‐driven environmental changes
Recent assessments of future risk to atoll habitability have focused on island erosion and submergence, and have overlooked the effects of other climate‐related drivers, as well as differences between ocean basins and island types. Here we investigate the cumulative risk arising from multiple drivers (sea‐level rise; changes in rainfall, ocean–atmosphere oscillations and tropical cyclone intensity; ocean warming and acidification) to five Habitab…
Are we ready for ocean acidification? A framework for assessing and advancing policy readiness
Effective climate policy that addresses carbon dioxide emissions is essential to minimizing and addressing the impacts of ocean acidification (OA). Here we present a framework to assess the readiness of OA policy, using coral reefs as a focal system. Six dimensions encompass comprehensive preparation by ecosystems and societies for the impacts of OA and other anthropogenic hazards: (1) climate protection measures, (2) OA literacy, (3) area-based …
Limited understanding of basic ocean processes is hindering progress in marine carbon dioxide removal
Effective carbon dioxide removal requires a One-Earth approach
L’Océan et la recherche scientifique à l’épreuve des tensions géopolitiques. Les leçons de la 3 e Conférence des Nations unies sur l’Océan
Monitoring, reporting, and verification of marine carbon dioxide removal: Exploring scientific consensus and divergences across continents
Marine Carbon Dioxide Removal (mCDR) approaches are increasingly considered for climate change mitigation as a supplement to rapid emissions reduction. However, it is still unclear if mCDR approaches could be effective, safe, and accountable. A critical requirement for mCDR to work, potentially, is robust monitoring, reporting, and verification (MRV) of greenhouse gas(es) removed through mCDR activities. MRV frameworks and protocols are currently…
Climate change (8 works) · Environmental Science (7 works) · Ocean Acidification Effects and Responses (5 works) · Biology (4 works) · Coral and Marine Ecosystems Studies (4 works) · Ecology (4 works) · Environmental resource management (4 works) · Natural resource economics (4 works) · Ocean Acidification (4 works) · Business (3 works)