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Quentin Lejeune

Biographic Data

ID6820952
NAMEQuentin Lejeune
GIVEN NAMESQuentin
FAMILY NAMELejeune
SIGNATURELEJEUNE Q
AFFILIATIONSClimate Analytics
ORCID0000-0001-9152-3197
VERIFIEDYes
TOTAL WORKS7
TOTAL CITATIONS0
AUTHOR COUNT7
EDITOR COUNT0
FIRST PUBLICATION YEAR2021
LATEST PUBLICATION YEAR2026
H-INDEX0
  • Combating heat stress through urban planning

    Open Access•Niels Souverijns, Dirk Lauwaet et al.•ARTICLE•Landscape and Urban Planning•2026

  • Response to Guerin et al. Comment on ’Mapping the climate risk to urban forests at city scale’

    Open Access•Manuel Esperón‐Rodríguez, Rachael V Gallagher et al.•ARTICLE•Landscape and Urban Planning•2025

  • Mapping the climate risk to urban forests at city scale

    Open Access•Manuel Esperón‐Rodríguez, Rachael V Gallagher et al.•ARTICLE•Landscape and Urban Planning•2024

    Climate change represents a threat to the performance and persistence of urban forests and the multiple benefits they provide to city dwellers. Here, we use a novel approach to identify species and areas at high risk of climate change using the city of Melbourne, Australia, as a case study. We derive a safety margin, calculated based on climatic tolerance to two extreme climate variables (maximum temperature of the warmest month, MTWM; precipitat…

  • Neglected implications of land-use and land-cover changes on the climate-health nexus

    Open Access•Anton Orlov, Kristin Aunan et al.•ARTICLE•Environmental Research Letters•2023

    Climate change can substantially affect temperature-related mortality and morbidity, especially under high green-house gas emission pathways. Achieving the Paris Agreement goals require not only drastic reductions in fossil fuel-based emissions but also land-use and land-cover changes (LULCC), such as reforestation and afforestation. LULCC has been mainly analysed in the context of land-based mitigation and food security. However, growing scienti…

  • Accounting for socioeconomic constraints in sustainable irrigation expansion assessments

    Open Access•Nicole van Maanen, Marina Andrijevic et al.•ARTICLE•Environmental Research Letters•2022

    Sustainable irrigation expansion over water limited croplands is an important measure to enhance agricultural yields and increase the resilience of crop production to global warming. While existing global assessments of irrigation expansion mainly illustrate the biophysical potential for irrigation, socioeconomic factors such as weak governance or low income, that demonstrably impede the successful implementation of sustainable irrigation, remain…

  • Accounting for local temperature effect substantially alters afforestation patterns

    Open Access•Michael Windisch, Florian Humpenöder et al.•ARTICLE•Environmental Research Letters•2022

    Human intervention in forested ecosystems is hoped to perform a fundamental shift within the next decade by reverting current forest loss—a major source of CO 2 emissions—to net forest gain taking up carbon and thus aiding climate change mitigation. The demanded extensive establishment of forests will change the local surface energy fluxes, and with it the local climate, in addition to competing with food and fiber production for land and water. …

  • Machine-learning-based evidence and attribution mapping of 100,000 climate impact studies

    Open Access•Max Callaghan, Carl‐Friedrich Schleussner et al.•ARTICLE•Nature Climate Change•2021

No prominent works on this page.

  • Machine-learning-based evidence and attribution mapping of 100,000 climate impact studies

    Open Access•Max Callaghan, Carl‐Friedrich Schleussner et al.•ARTICLE•Nature Climate Change•2021

  • Accounting for socioeconomic constraints in sustainable irrigation expansion assessments

    Open Access•Nicole van Maanen, Marina Andrijevic et al.•ARTICLE•Environmental Research Letters•2022

    Sustainable irrigation expansion over water limited croplands is an important measure to enhance agricultural yields and increase the resilience of crop production to global warming. While existing global assessments of irrigation expansion mainly illustrate the biophysical potential for irrigation, socioeconomic factors such as weak governance or low income, that demonstrably impede the successful implementation of sustainable irrigation, remain…

  • Accounting for local temperature effect substantially alters afforestation patterns

    Open Access•Michael Windisch, Florian Humpenöder et al.•ARTICLE•Environmental Research Letters•2022

    Human intervention in forested ecosystems is hoped to perform a fundamental shift within the next decade by reverting current forest loss—a major source of CO 2 emissions—to net forest gain taking up carbon and thus aiding climate change mitigation. The demanded extensive establishment of forests will change the local surface energy fluxes, and with it the local climate, in addition to competing with food and fiber production for land and water. …

  • Neglected implications of land-use and land-cover changes on the climate-health nexus

    Open Access•Anton Orlov, Kristin Aunan et al.•ARTICLE•Environmental Research Letters•2023

    Climate change can substantially affect temperature-related mortality and morbidity, especially under high green-house gas emission pathways. Achieving the Paris Agreement goals require not only drastic reductions in fossil fuel-based emissions but also land-use and land-cover changes (LULCC), such as reforestation and afforestation. LULCC has been mainly analysed in the context of land-based mitigation and food security. However, growing scienti…

  • Mapping the climate risk to urban forests at city scale

    Open Access•Manuel Esperón‐Rodríguez, Rachael V Gallagher et al.•ARTICLE•Landscape and Urban Planning•2024

    Climate change represents a threat to the performance and persistence of urban forests and the multiple benefits they provide to city dwellers. Here, we use a novel approach to identify species and areas at high risk of climate change using the city of Melbourne, Australia, as a case study. We derive a safety margin, calculated based on climatic tolerance to two extreme climate variables (maximum temperature of the warmest month, MTWM; precipitat…

  • Response to Guerin et al. Comment on ’Mapping the climate risk to urban forests at city scale’

    Open Access•Manuel Esperón‐Rodríguez, Rachael V Gallagher et al.•ARTICLE•Landscape and Urban Planning•2025

  • Combating heat stress through urban planning

    Open Access•Niels Souverijns, Dirk Lauwaet et al.•ARTICLE•Landscape and Urban Planning•2026

Environmental Science (5 works) · Climate change (4 works) · Ecology (4 works) · Geography (4 works) · Economics (3 works) · Environmental resource management (3 works) · Land Use and Ecosystem Services (3 works) · Natural resource economics (3 works) · Urban Green Space and Health (3 works) · Afforestation (2 works)

Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae