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Gregory Duveiller

Biographic Data

ID6318640
NAMEGregory Duveiller
GIVEN NAMESGregory
FAMILY NAMEDuveiller
SIGNATUREDUVEILLER G
AFFILIATIONSJoint Research Centre
ORCID0000-0002-6471-8404
VERIFIEDYes
TOTAL WORKS9
TOTAL CITATIONS6
AUTHOR COUNT9
EDITOR COUNT0
FIRST PUBLICATION YEAR2015
LATEST PUBLICATION YEAR2025
H-INDEX2
  • Globally synchronized changes in the biosphere, atmosphere, and society identified using public data

    Open Access•Wantong Li, Gregory Duveiller et al.•ARTICLE•One Earth•2025

    Contains fulltext : 328688.pdf (Publisher’s version ) (Open Access)

  • Climate policies for carbon neutrality should not rely on the uncertain increase of carbon stocks in existing forests

    Open Access•Caspar T J Roebroek, L Caporaso et al.•ARTICLE•Environmental Research Letters•2024

    The international community, through treaties such as the Paris agreement, aims to limit climate change to well below 2 °C, which implies reaching carbon neutrality around the second half of the century. In the current calculations underpinning the various roadmaps toward carbon neutrality, a major component is a steady or even expanding terrestrial carbon sink, supported by an increase of global forest biomass. However, recent research has chall…

  • Regulation of the global carbon and water cycles through vegetation structural and physiological dynamics

    Open Access•Wantong Li, Gregory Duveiller et al.•ARTICLE•Environmental Research Letters•2024

    Vegetation plays an essential role in regulating carbon and water cycles, e.g. by taking up atmospheric CO 2 through photosynthesis and by transferring soil water to the atmosphere through transpiration. Vegetation function is shaped by its structure and physiology: vegetation structure is determined by the amount of materials for plants and how it is organised in space and time, while vegetation physiology controls the instantaneous response of …

  • Spatially-optimized urban greening for reduction of population exposure to land surface temperature extremes

    Open Access•Emanuele Massaro, Rossano Schifanella et al.•ARTICLE•Nature Communications•2023

    The population experiencing high temperatures in cities is rising due to anthropogenic climate change, settlement expansion, and population growth. Yet, efficient tools to evaluate potential intervention strategies to reduce population exposure to Land Surface Temperature (LST) extremes are still lacking. Here, we implement a spatial regression model based on remote sensing data that is able to assess the population exposure to LST extremes in ur…

  • Global long-term mapping of surface temperature shows intensified intra-city urban heat island extremes

    Open Access•Lorenzo Mentaschi, Gregory Duveiller et al.•ARTICLE•Global Environmental Change•2021•Cited by: 2•References: 2

    Surface temperatures are generally higher in cities than in rural surroundings. This phenomenon, known as Surface Urban Heat Island (SUHI), increases the risk of heat-related human illnesses and mortality. Past global studies analysed this phenomenon aggregated at city scale or over seasonal and annual time periods, while human impacts strongly depend on shorter term heat stress experienced locally. Here we develop a global long-term high-resolut…

  • Maximising climate mitigation potential by carbon and radiative agricultural land management with cover crops

    Open Access•Emanuele Lugato, Alessandro Cescatti et al.•ARTICLE•Environmental Research Letters•2020

    To reach the Paris climate targets, the mitigation capacity needs to be maximized across all components of the Earth system, especially land. Mitigation actions through land management, such as cover crops in agricultural soils, are often evaluated in terms of their carbon sequestration potential, while radiative forcing related to surface albedo changes is often ignored. The aim of this study was to assess the mitigation potential of cover crops…

  • Estimating and understanding crop yields with explainable deep learning in the Indian Wheat Belt

    Open Access•Aleksandra Wolanin, Gonzalo Mateo‐García et al.•ARTICLE•Environmental Research Letters•2020

    Forecasting crop yields is becoming increasingly important under the current context in which food security needs to be ensured despite the challenges brought by climate change, an expanding world population accompanied by rising incomes, increasing soil erosion, and decreasing water resources. Temperature, radiation, water availability and other environmental conditions influence crop growth, development, and final grain yield in a complex nonli…

  • Local biophysical effects of land use and land cover change: Towards an assessment tool for policy makers

    Open Access•Gregory Duveiller, L Caporaso et al.•ARTICLE•Land Use Policy•2020•Cited by: 4•References: 48

    Land use and land cover change (LULCC) affects the climate through both biogeochemical (BGC) and biophysical (BPH) mechanisms. While BGC effects are assessed at global scale and are at the heart of climate treaties such as the Paris Agreement, BPH effects are totally absent despite their increasingly recognized impact, especially at local scale. This stems from the complexity in characterizing their climate impacts both at local and global scale,…

  • Climate change impact and potential adaptation strategies under alternate realizations of climate scenarios for three major crops in Europe

    Open Access•Marcello Donatelli, Amit Kumar Srivastava et al.•ARTICLE•Environmental Research Letters•2015

    This study presents estimate of the effects of climate variables and CO2 on three major crops namely wheat, rapeseed, and sunflower in EU27 Member States. We also investigated some technical adaptation options which could offset climate change impacts. The time-slices 2000, 2020 and 2030 were chosen to represent the baseline and future climate respectively. Furthermore, two realizations within the A1B emission scenario proposed by the Special Rep…

  • Local biophysical effects of land use and land cover change: Towards an assessment tool for policy makers

    Open Access•Gregory Duveiller, L Caporaso et al.•ARTICLE•Land Use Policy•2020•Cited by: 4•References: 48

    Land use and land cover change (LULCC) affects the climate through both biogeochemical (BGC) and biophysical (BPH) mechanisms. While BGC effects are assessed at global scale and are at the heart of climate treaties such as the Paris Agreement, BPH effects are totally absent despite their increasingly recognized impact, especially at local scale. This stems from the complexity in characterizing their climate impacts both at local and global scale,…

  • Global long-term mapping of surface temperature shows intensified intra-city urban heat island extremes

    Open Access•Lorenzo Mentaschi, Gregory Duveiller et al.•ARTICLE•Global Environmental Change•2021•Cited by: 2•References: 2

    Surface temperatures are generally higher in cities than in rural surroundings. This phenomenon, known as Surface Urban Heat Island (SUHI), increases the risk of heat-related human illnesses and mortality. Past global studies analysed this phenomenon aggregated at city scale or over seasonal and annual time periods, while human impacts strongly depend on shorter term heat stress experienced locally. Here we develop a global long-term high-resolut…

  • Climate change impact and potential adaptation strategies under alternate realizations of climate scenarios for three major crops in Europe

    Open Access•Marcello Donatelli, Amit Kumar Srivastava et al.•ARTICLE•Environmental Research Letters•2015

    This study presents estimate of the effects of climate variables and CO2 on three major crops namely wheat, rapeseed, and sunflower in EU27 Member States. We also investigated some technical adaptation options which could offset climate change impacts. The time-slices 2000, 2020 and 2030 were chosen to represent the baseline and future climate respectively. Furthermore, two realizations within the A1B emission scenario proposed by the Special Rep…

  • Maximising climate mitigation potential by carbon and radiative agricultural land management with cover crops

    Open Access•Emanuele Lugato, Alessandro Cescatti et al.•ARTICLE•Environmental Research Letters•2020

    To reach the Paris climate targets, the mitigation capacity needs to be maximized across all components of the Earth system, especially land. Mitigation actions through land management, such as cover crops in agricultural soils, are often evaluated in terms of their carbon sequestration potential, while radiative forcing related to surface albedo changes is often ignored. The aim of this study was to assess the mitigation potential of cover crops…

  • Estimating and understanding crop yields with explainable deep learning in the Indian Wheat Belt

    Open Access•Aleksandra Wolanin, Gonzalo Mateo‐García et al.•ARTICLE•Environmental Research Letters•2020

    Forecasting crop yields is becoming increasingly important under the current context in which food security needs to be ensured despite the challenges brought by climate change, an expanding world population accompanied by rising incomes, increasing soil erosion, and decreasing water resources. Temperature, radiation, water availability and other environmental conditions influence crop growth, development, and final grain yield in a complex nonli…

  • Local biophysical effects of land use and land cover change: Towards an assessment tool for policy makers

    Open Access•Gregory Duveiller, L Caporaso et al.•ARTICLE•Land Use Policy•2020•Cited by: 4•References: 48

    Land use and land cover change (LULCC) affects the climate through both biogeochemical (BGC) and biophysical (BPH) mechanisms. While BGC effects are assessed at global scale and are at the heart of climate treaties such as the Paris Agreement, BPH effects are totally absent despite their increasingly recognized impact, especially at local scale. This stems from the complexity in characterizing their climate impacts both at local and global scale,…

  • Global long-term mapping of surface temperature shows intensified intra-city urban heat island extremes

    Open Access•Lorenzo Mentaschi, Gregory Duveiller et al.•ARTICLE•Global Environmental Change•2021•Cited by: 2•References: 2

    Surface temperatures are generally higher in cities than in rural surroundings. This phenomenon, known as Surface Urban Heat Island (SUHI), increases the risk of heat-related human illnesses and mortality. Past global studies analysed this phenomenon aggregated at city scale or over seasonal and annual time periods, while human impacts strongly depend on shorter term heat stress experienced locally. Here we develop a global long-term high-resolut…

  • Spatially-optimized urban greening for reduction of population exposure to land surface temperature extremes

    Open Access•Emanuele Massaro, Rossano Schifanella et al.•ARTICLE•Nature Communications•2023

    The population experiencing high temperatures in cities is rising due to anthropogenic climate change, settlement expansion, and population growth. Yet, efficient tools to evaluate potential intervention strategies to reduce population exposure to Land Surface Temperature (LST) extremes are still lacking. Here, we implement a spatial regression model based on remote sensing data that is able to assess the population exposure to LST extremes in ur…

  • Climate policies for carbon neutrality should not rely on the uncertain increase of carbon stocks in existing forests

    Open Access•Caspar T J Roebroek, L Caporaso et al.•ARTICLE•Environmental Research Letters•2024

    The international community, through treaties such as the Paris agreement, aims to limit climate change to well below 2 °C, which implies reaching carbon neutrality around the second half of the century. In the current calculations underpinning the various roadmaps toward carbon neutrality, a major component is a steady or even expanding terrestrial carbon sink, supported by an increase of global forest biomass. However, recent research has chall…

  • Regulation of the global carbon and water cycles through vegetation structural and physiological dynamics

    Open Access•Wantong Li, Gregory Duveiller et al.•ARTICLE•Environmental Research Letters•2024

    Vegetation plays an essential role in regulating carbon and water cycles, e.g. by taking up atmospheric CO 2 through photosynthesis and by transferring soil water to the atmosphere through transpiration. Vegetation function is shaped by its structure and physiology: vegetation structure is determined by the amount of materials for plants and how it is organised in space and time, while vegetation physiology controls the instantaneous response of …

  • Globally synchronized changes in the biosphere, atmosphere, and society identified using public data

    Open Access•Wantong Li, Gregory Duveiller et al.•ARTICLE•One Earth•2025

    Contains fulltext : 328688.pdf (Publisher’s version ) (Open Access)

Environmental Science (8 works) · Climate change (7 works) · Geography (6 works) · Climate variability and models (5 works) · Ecology (5 works) · Atmospheric sciences (4 works) · Computer Science (4 works) · Atmospheric and Environmental Gas Dynamics (3 works) · Geology (3 works) · Land cover (3 works)

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