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Olivier Aumont

Biographic Data

ID6568641
NAMEOlivier Aumont
GIVEN NAMESOlivier
FAMILY NAMEAumont
SIGNATUREAUMONT O
AFFILIATIONSCentre National de la Recherche Scientifique
ORCID0000-0003-3954-506X
VERIFIEDYes
TOTAL WORKS9
TOTAL CITATIONS6
AUTHOR COUNT9
EDITOR COUNT0
FIRST PUBLICATION YEAR2005
LATEST PUBLICATION YEAR2026
H-INDEX2
  • The High Value of Climate Mitigation in Limiting Global Fish Biomass Losses to the year 23

    Keith B Rodgers, Daniele Bianchi et al.•ARTICLE•2026

    It is widely understood that future climate change will have large deleterious impacts on marine ecosystems. Large synthesis efforts conducted to date by FishMIP with higher trophic level (HTL) models have shown that under high emissions scenarios, future fish biomass losses of the order of 20% can be expected by 2100. However, the impact of anthropogenic climate change beyond 2100 remains largely unexplored, even though policy choices made now w…

  • Flight quotas outperform focused mitigation strategies in reducing the carbon footprint of academic travel

    Open Access•Tamara Ben‐ari, Gaëlle Lefort et al.•ARTICLE•Environmental Research Letters•2024

    The carbon footprint of academia has become a prominent concern and a burgeoning research area, with a notable focus on greenhouse gas emissions (GHG) from research-related travels. Mitigation strategies often promote alternatives, such as developing virtual communication or adopting sustainable transportation modes for short distances. While more ambitious strategies involving the transformation of research practices are increasingly discussed, …

  • The carbon footprint of scientific visibility

    Open Access•Olivier Berné, Lydiane Agier et al.•ARTICLE•Environmental Research Letters•2022

    In the face of global warming, academics have started to consider and analyze the environmental and carbon footprint associated with their professional activity. Among the several sources of greenhouse gas emissions from research activities, air travel—one of the most visible and unequal fractions of this footprint—has received much attention. Of particular interest is the question of how air travel may be related to scientific success or visibil…

  • Evolution of the riverine nutrient export to the Tropical Atlantic over the last 15 years

    Open Access•Julien Jouanno, Jean‐Sébastien Moquet et al.•ARTICLE•Environmental Research Letters•2021

    The Tropical Atlantic is facing a massive proliferation of Sargassum since 2011, with severe environmental and socioeconomic impacts. As a contribution to this proliferation, an increase in nutrient inputs from the tropical rivers, in response to climate and land use changes or increasing urbanization, has been often suggested and widely reported in the scientific and public literature. Here we discuss whether changes in river nutrient inputs cou…

  • Pathways to sustaining tuna-dependent Pacific Island economies during climate change

    Open Access•Johann D Bell, Inna Senina et al.•ARTICLE•Nature Sustainability•2021•Cited by: 1•References: 5

    Climate-driven redistribution of tuna threatens to disrupt the economies of Pacific Small Island Developing States (SIDS) and sustainable management of the world’s largest tuna fishery. Here we show that by 2050, under a high greenhouse gas emissions scenario (RCP 8.5), the total biomass of three tuna species in the waters of ten Pacific SIDS could decline by an average of 13% (range = −5% to −20%) due to a greater proportion of fish occurring in…

  • From shared socio-economic pathways (SSPs) to oceanic system pathways (OSPs)

    Open Access•Olivier Maury, Liam Campling et al.•ARTICLE•Global Environmental Change•2017•Cited by: 3•References: 5

  • Climate change projections using the IPSL-CM5 Earth System Model

    Open Access•Jean-Louis Dufresne, M-A Foujols et al.•ARTICLE•Climate Dynamics•2013

    We present the global general circulation model IPSL-CM5 developed to study the long-term response of the climate system to natural and anthropogenic forcings as part of the 5th Phase of the Coupled Model Intercomparison Project (CMIP5). This model includes an interactive carbon cycle, a representation of tropospheric and stratospheric chemistry, and a comprehensive representation of aerosols. As it represents the principal dynamical, physical, a…

  • A global science–policy partnership for progress toward sustainability of oceanic ecosystems and fisheries

    Open Access•Olivier Maury, Kathleen A Miller et al.•ARTICLE•Current Opinion in Environmental…•2013•Cited by: 2•References: 4

  • Anthropogenic ocean acidification over the twenty-first century and its impact on calcifying organisms

    Open Access•James C Orr, Victoria J Fabry et al.•ARTICLE•Nature•2005

  • From shared socio-economic pathways (SSPs) to oceanic system pathways (OSPs)

    Open Access•Olivier Maury, Liam Campling et al.•ARTICLE•Global Environmental Change•2017•Cited by: 3•References: 5

  • A global science–policy partnership for progress toward sustainability of oceanic ecosystems and fisheries

    Open Access•Olivier Maury, Kathleen A Miller et al.•ARTICLE•Current Opinion in Environmental…•2013•Cited by: 2•References: 4

  • Pathways to sustaining tuna-dependent Pacific Island economies during climate change

    Open Access•Johann D Bell, Inna Senina et al.•ARTICLE•Nature Sustainability•2021•Cited by: 1•References: 5

    Climate-driven redistribution of tuna threatens to disrupt the economies of Pacific Small Island Developing States (SIDS) and sustainable management of the world’s largest tuna fishery. Here we show that by 2050, under a high greenhouse gas emissions scenario (RCP 8.5), the total biomass of three tuna species in the waters of ten Pacific SIDS could decline by an average of 13% (range = −5% to −20%) due to a greater proportion of fish occurring in…

  • Anthropogenic ocean acidification over the twenty-first century and its impact on calcifying organisms

    Open Access•James C Orr, Victoria J Fabry et al.•ARTICLE•Nature•2005

  • Climate change projections using the IPSL-CM5 Earth System Model

    Open Access•Jean-Louis Dufresne, M-A Foujols et al.•ARTICLE•Climate Dynamics•2013

    We present the global general circulation model IPSL-CM5 developed to study the long-term response of the climate system to natural and anthropogenic forcings as part of the 5th Phase of the Coupled Model Intercomparison Project (CMIP5). This model includes an interactive carbon cycle, a representation of tropospheric and stratospheric chemistry, and a comprehensive representation of aerosols. As it represents the principal dynamical, physical, a…

  • A global science–policy partnership for progress toward sustainability of oceanic ecosystems and fisheries

    Open Access•Olivier Maury, Kathleen A Miller et al.•ARTICLE•Current Opinion in Environmental…•2013•Cited by: 2•References: 4

  • From shared socio-economic pathways (SSPs) to oceanic system pathways (OSPs)

    Open Access•Olivier Maury, Liam Campling et al.•ARTICLE•Global Environmental Change•2017•Cited by: 3•References: 5

  • Evolution of the riverine nutrient export to the Tropical Atlantic over the last 15 years

    Open Access•Julien Jouanno, Jean‐Sébastien Moquet et al.•ARTICLE•Environmental Research Letters•2021

    The Tropical Atlantic is facing a massive proliferation of Sargassum since 2011, with severe environmental and socioeconomic impacts. As a contribution to this proliferation, an increase in nutrient inputs from the tropical rivers, in response to climate and land use changes or increasing urbanization, has been often suggested and widely reported in the scientific and public literature. Here we discuss whether changes in river nutrient inputs cou…

  • Pathways to sustaining tuna-dependent Pacific Island economies during climate change

    Open Access•Johann D Bell, Inna Senina et al.•ARTICLE•Nature Sustainability•2021•Cited by: 1•References: 5

    Climate-driven redistribution of tuna threatens to disrupt the economies of Pacific Small Island Developing States (SIDS) and sustainable management of the world’s largest tuna fishery. Here we show that by 2050, under a high greenhouse gas emissions scenario (RCP 8.5), the total biomass of three tuna species in the waters of ten Pacific SIDS could decline by an average of 13% (range = −5% to −20%) due to a greater proportion of fish occurring in…

  • The carbon footprint of scientific visibility

    Open Access•Olivier Berné, Lydiane Agier et al.•ARTICLE•Environmental Research Letters•2022

    In the face of global warming, academics have started to consider and analyze the environmental and carbon footprint associated with their professional activity. Among the several sources of greenhouse gas emissions from research activities, air travel—one of the most visible and unequal fractions of this footprint—has received much attention. Of particular interest is the question of how air travel may be related to scientific success or visibil…

  • Flight quotas outperform focused mitigation strategies in reducing the carbon footprint of academic travel

    Open Access•Tamara Ben‐ari, Gaëlle Lefort et al.•ARTICLE•Environmental Research Letters•2024

    The carbon footprint of academia has become a prominent concern and a burgeoning research area, with a notable focus on greenhouse gas emissions (GHG) from research-related travels. Mitigation strategies often promote alternatives, such as developing virtual communication or adopting sustainable transportation modes for short distances. While more ambitious strategies involving the transformation of research practices are increasingly discussed, …

  • The High Value of Climate Mitigation in Limiting Global Fish Biomass Losses to the year 23

    Keith B Rodgers, Daniele Bianchi et al.•ARTICLE•2026

    It is widely understood that future climate change will have large deleterious impacts on marine ecosystems. Large synthesis efforts conducted to date by FishMIP with higher trophic level (HTL) models have shown that under high emissions scenarios, future fish biomass losses of the order of 20% can be expected by 2100. However, the impact of anthropogenic climate change beyond 2100 remains largely unexplored, even though policy choices made now w…

Environmental Science (6 works) · Geography (6 works) · Marine and fisheries research (6 works) · Climate change (5 works) · Ecology (5 works) · Biology (4 works) · Coral and Marine Ecosystems Studies (4 works) · Business (3 works) · Coastal and Marine Management (3 works) · Economics (3 works)

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