John Lenoir
Dados Biográficos
| ID | 177672 |
|---|---|
| NOME | John Lenoir |
| PRENOMES | John |
| SOBRENOME | Lenoir |
| ASSINATURA | LENOIR J |
| AFILIAÇÕES | Centre National de la Recherche Scientifique |
| ORCID | 0000-0003-0638-9582 |
| VERIFICADO | Sim |
| TOTAL DE OBRAS | 6 |
| TOTAL DE CITAÇÕES | 0 |
| TOTAL COMO AUTOR | 6 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 1974 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2023 |
| ÍNDICE H | 0 |
Assessment of soil compaction and rutting in managed forests through an airborne LiDAR technique
To ensure sustainable forest management, the assessment and monitoring of soil compaction and rutting are essential. Here, we used airborne light detection and ranging‐derived digital terrain model (LiDAR‐derived DTM), available for the forest of Compiègne in northern France, to compute a spatial index of soil rutting. Following an environmental systematic sampling design, we selected 45 plots representative of the forest stand conditions where w…
Climate‐driven ‘species‐on‐the‐move’ provide tangible anchors to engage the public on climate change
Over recent decades, our understanding of climate change has accelerated greatly, but unfortunately, observable impacts have increased in tandem. Both mitigation and adaptation have not progressed at the level or scale warranted by our collective knowledge on climate change. More effective approaches to engage people on current and future anthropogenic climate change effects are urgently needed. Here, we show how species whose distributions are s…
Biogeophysical controls on soil-atmosphere thermal differences
Soil temperature (ST) has a key role in Arctic ecosystem functioning and global environmental change. However, soil thermal conditions do not necessarily follow synoptic temperature variations. This is because local biogeophysical processes can lead to a pronounced soil-atmosphere thermal offset (T) while altering the coupling ( ) between ST and ambient air temperature (AAT). Here, we aim to uncover the spatiotemporal variation in these parameter…
Biodiversity redistribution under climate change
Consequences of shifting species distributions Climate change is causing geographical redistribution of plant and animal species globally. These distributional shifts are leading to new ecosystems and ecological communities, changes that will affect human society. Pecl et al. review these current and future impacts and assess their implications for sustainable development goals. Science , this issue p. eaai9214
Optimal sampling design and minimal effort for soil charcoal analyses considering the soil type and forest history
Ethnology
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Ethnology
Biodiversity redistribution under climate change
Consequences of shifting species distributions Climate change is causing geographical redistribution of plant and animal species globally. These distributional shifts are leading to new ecosystems and ecological communities, changes that will affect human society. Pecl et al. review these current and future impacts and assess their implications for sustainable development goals. Science , this issue p. eaai9214
Optimal sampling design and minimal effort for soil charcoal analyses considering the soil type and forest history
Biogeophysical controls on soil-atmosphere thermal differences
Soil temperature (ST) has a key role in Arctic ecosystem functioning and global environmental change. However, soil thermal conditions do not necessarily follow synoptic temperature variations. This is because local biogeophysical processes can lead to a pronounced soil-atmosphere thermal offset (T) while altering the coupling ( ) between ST and ambient air temperature (AAT). Here, we aim to uncover the spatiotemporal variation in these parameter…
Assessment of soil compaction and rutting in managed forests through an airborne LiDAR technique
To ensure sustainable forest management, the assessment and monitoring of soil compaction and rutting are essential. Here, we used airborne light detection and ranging‐derived digital terrain model (LiDAR‐derived DTM), available for the forest of Compiègne in northern France, to compute a spatial index of soil rutting. Following an environmental systematic sampling design, we selected 45 plots representative of the forest stand conditions where w…
Climate‐driven ‘species‐on‐the‐move’ provide tangible anchors to engage the public on climate change
Over recent decades, our understanding of climate change has accelerated greatly, but unfortunately, observable impacts have increased in tandem. Both mitigation and adaptation have not progressed at the level or scale warranted by our collective knowledge on climate change. More effective approaches to engage people on current and future anthropogenic climate change effects are urgently needed. Here, we show how species whose distributions are s…
Environmental Science (5 obras) · Climate change (3 obras) · Geology (3 obras) · Biology (2 obras) · Ecology (2 obras) · Ecosystem (2 obras) · Environmental resource management (2 obras) · Geography (2 obras) · Soil Science (2 obras) · Soil water (2 obras)