Impact of the 2015/2016 El Niño on the terrestrial carbon cycle constrained by bottom-up and top-down approaches. (19th November 2018)
- Record Type:
- Journal Article
- Title:
- Impact of the 2015/2016 El Niño on the terrestrial carbon cycle constrained by bottom-up and top-down approaches. (19th November 2018)
- Main Title:
- Impact of the 2015/2016 El Niño on the terrestrial carbon cycle constrained by bottom-up and top-down approaches
- Authors:
- Bastos, Ana
Friedlingstein, Pierre
Sitch, Stephen
Chen, Chi
Mialon, Arnaud
Wigneron, Jean-Pierre
Arora, Vivek K.
Briggs, Peter R.
Canadell, Josep G.
Ciais, Philippe
Chevallier, Frédéric
Cheng, Lei
Delire, Christine
Haverd, Vanessa
Jain, Atul K.
Joos, Fortunat
Kato, Etsushi
Lienert, Sebastian
Lombardozzi, Danica
Melton, Joe R.
Myneni, Ranga
Nabel, Julia E. M. S.
Pongratz, Julia
Poulter, Benjamin
Rödenbeck, Christian
Séférian, Roland
Tian, Hanqin
van Eck, Christel
Viovy, Nicolas
Vuichard, Nicolas
Walker, Anthony P.
Wiltshire, Andy
Yang, Jia
Zaehle, Sönke
Zeng, Ning
Zhu, Dan
… (more) - Abstract:
- Abstract : Evaluating the response of the land carbon sink to the anomalies in temperature and drought imposed by El Niño events provides insights into the present-day carbon cycle and its climate-driven variability. It is also a necessary step to build confidence in terrestrial ecosystems models' response to the warming and drying stresses expected in the future over many continents, and particularly in the tropics. Here we present an in-depth analysis of the response of the terrestrial carbon cycle to the 2015/2016 El Niño that imposed extreme warming and dry conditions in the tropics and other sensitive regions. First, we provide a synthesis of the spatio-temporal evolution of anomalies in net land–atmosphere CO2 fluxes estimated by two in situ measurements based on atmospheric inversions and 16 land-surface models (LSMs) from TRENDYv6. Simulated changes in ecosystem productivity, decomposition rates and fire emissions are also investigated. Inversions and LSMs generally agree on the decrease and subsequent recovery of the land sink in response to the onset, peak and demise of El Niño conditions and point to the decreased strength of the land carbon sink: by 0.4–0.7 PgC yr −1 (inversions) and by 1.0 PgC yr −1 (LSMs) during 2015/2016. LSM simulations indicate that a decrease in productivity, rather than increase in respiration, dominated the net biome productivity anomalies in response to ENSO throughout the tropics, mainly associated with prolonged drought conditions.Abstract : Evaluating the response of the land carbon sink to the anomalies in temperature and drought imposed by El Niño events provides insights into the present-day carbon cycle and its climate-driven variability. It is also a necessary step to build confidence in terrestrial ecosystems models' response to the warming and drying stresses expected in the future over many continents, and particularly in the tropics. Here we present an in-depth analysis of the response of the terrestrial carbon cycle to the 2015/2016 El Niño that imposed extreme warming and dry conditions in the tropics and other sensitive regions. First, we provide a synthesis of the spatio-temporal evolution of anomalies in net land–atmosphere CO2 fluxes estimated by two in situ measurements based on atmospheric inversions and 16 land-surface models (LSMs) from TRENDYv6. Simulated changes in ecosystem productivity, decomposition rates and fire emissions are also investigated. Inversions and LSMs generally agree on the decrease and subsequent recovery of the land sink in response to the onset, peak and demise of El Niño conditions and point to the decreased strength of the land carbon sink: by 0.4–0.7 PgC yr −1 (inversions) and by 1.0 PgC yr −1 (LSMs) during 2015/2016. LSM simulations indicate that a decrease in productivity, rather than increase in respiration, dominated the net biome productivity anomalies in response to ENSO throughout the tropics, mainly associated with prolonged drought conditions. This article is part of a discussion meeting issue 'The impact of the 2015/2016 El Niño on the terrestrial tropical carbon cycle: patterns, mechanisms and implications'. … (more)
- Is Part Of:
- Philosophical transactions. Volume 373:Number 1760(2018)
- Journal:
- Philosophical transactions
- Issue:
- Volume 373:Number 1760(2018)
- Issue Display:
- Volume 373, Issue 1760 (2018)
- Year:
- 2018
- Volume:
- 373
- Issue:
- 1760
- Issue Sort Value:
- 2018-0373-1760-0000
- Page Start:
- Page End:
- Publication Date:
- 2018-11-19
- Subjects:
- carbon cycle -- El Niño/Southern Oscillation -- land-surface models -- atmospheric inversions
Biology -- Periodicals
Science -- Periodicals
570 - Journal URLs:
- https://royalsocietypublishing.org/loi/rstb ↗
- DOI:
- 10.1098/rstb.2017.0304 ↗
- Languages:
- English
- ISSNs:
- 0962-8436
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library STI - ELD Digital store
- Ingest File:
- 25082.xml