
Emilie Joetzjer
Articles
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Aug 14, 2024 |
agupubs.onlinelibrary.wiley.com | Yitong Yao |Philippe Ciais |Emilie Joetzjer |Songbai Hong
1 Introduction The Amazon rainforest biome is a crucial concern due to its vast yet fragile carbon and biodiversity reserves. Intact Amazon forests hold more than 20% of terrestrial species, house 100 billion tons of carbon (Feldpausch et al., 2012), absorb atmospheric CO2, and regulate regional and continental climates by recycling moisture (Werth & Avissar, 2004; Zemp et al., 2017).
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Jun 18, 2024 |
hal.science | Yitong Yao |Philippe Ciais |Emilie Joetzjer |Wei Li
Article Dans Une Revue Earth System Dynamics Année : 2024 The impacts of elevated CO2 on forest growth, mortality, and recovery in the Amazon rainforest Origine Fichiers éditeurs autorisés sur une archive ouverte hal-04615120 , version 1 (18-06-2024) Yitong Yao, Philippe Ciais, Emilie Joetzjer, Wei Li, Lei Zhu, et al.. The impacts of elevated CO2 on forest growth, mortality, and recovery in the Amazon rainforest.
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Nov 1, 2023 |
nature.com | Wouter Peters |Emilie Joetzjer |Sébastien Lafont |Gerbrand Koren |Philippe Ciais |Ana Bastos | +4 more
Correction to: Nature Communications https://doi.org/10.1038/s41467-023-41851-0, published online 06 October 2023In this article the grant number 4000140982/23/I-EF relating to the ESA Carbon-RO for Ana Bastos, Philippe Ciais, and Stephen Sitch was omitted. The original article has been corrected. Additionally, Auke M. van der Woude and Wouter Peters should have been denoted as equally contributing authors. The original article has been corrected.
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Oct 6, 2023 |
nature.com | Wouter Peters |Gerbrand Koren |Philippe Ciais |Ana Bastos |Stephen Sitch |Adrien Jacotot | +4 more
AbstractThe year 2022 saw record breaking temperatures in Europe during both summer and fall. Similar to the recent 2018 drought, close to 30% (3.0 million km2) of the European continent was under severe summer drought. In 2022, the drought was located in central and southeastern Europe, contrasting the Northern-centered 2018 drought. We show, using multiple sets of observations, a reduction of net biospheric carbon uptake in summer (56-62 TgC) over the drought area.
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