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  Changes in the response of the Northern hemisphere carbon uptake to temperature over the last three decades

Yin, Y., Ciais, P., Chevallier, F., Li, W., Bastos, A., Piao, S., et al. (2018). Changes in the response of the Northern hemisphere carbon uptake to temperature over the last three decades. Geophysical Research Letters, 45(9), 4371-4380. doi:10.1029/2018GL077316.

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http://dx.doi.org/10.1029/2018GL077316 (Publisher version)
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 Creators:
Yin, Yi, Author
Ciais, Philippe, Author
Chevallier, Frederic, Author
Li, Wei, Author
Bastos, Ana1, Author           
Piao, Shilong, Author
Wang, Tao, Author
Liu, Hongyan, Author
Affiliations:
1External Organizations, ou_persistent22              

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Free keywords: ATMOSPHERIC CO2; SEASONAL CYCLE; SURFACE-TEMPERATURE; SOIL RESPIRATION; EXCHANGE; DIOXIDE; ECOSYSTEMS; INCREASES; WINTER; FLUXGeology; CO2 seasonal cycle; carbon-climate interaction; temperature sensitivity; net biome production; global carbon cycle; soil respiration;
 Abstract: The CO2 seasonal cycle amplitude (SCA) in the Northern Hemisphere has increased since the 1960sa feature attributed mainly to enhanced vegetation activity along climate warming and CO2 increase. We identified a temporal change in the sign of the correlation between SCA and air temperature (T) from positive to negative around the year 2000 at most Northern Hemisphere ground stations, consistent with signals from satellite column CO2 measurements since the mid-2000s. Further, we explored potential causes of this change using net biome productivity estimates from three atmospheric inversions for the period 1980-2015. The change in the SCA-T relationship is primarily attributable to changes in the net biome productivity-T relationship: positive correlations weakened in the spring in the high latitudes, confirming a limit to the "warmer spring-bigger carbon sink" mechanism; negative correlations diminished in the autumn/winter in the mid-to-high latitudes, challenging the "warmer winter-larger carbon release" assumption and highlighting the complexity of carbon processes outside the peak growing season.
Plain Language Summary The seasonal cycle amplitude (SCA) of atmospheric CO(2)an integrated signal of the terrestrial ecosystem metabolismhas increased since the 1960s in the Northern Hemisphere, a feature attributed mainly to enhanced vegetation activity along climate warming and CO2 increase. Earlier studies suggest a strong positive year-to-year correlation between SCA and air temperature (T). Here we identified a temporal change in the sign of the SCA-T correlation from positive to negative around the year 2000 at most Northern Hemisphere ground stations, consistent with signals from satellite column CO2 observations. We further explored potential causes of this change using land carbon flux (termed as net biome productivity) estimates from three atmospheric inversions for the period 1980-2015. The change in the SCA-T relationship is primarily attributable to changes in the net biome productivity-T relationship: positive correlations weakened in the spring in the high latitudes, confirming a limit to the "warmer spring-bigger carbon sink" mechanism; negative correlations diminished in the autumn/winter in the mid-to-high latitudes, challenging the "warmer winter-larger carbon release" assumption. This finding highlights a dynamic temperature sensitivity of the terrestrial ecosystem to climate warming and cautions the use of current carbon-climate response to constrain future projections.

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Language(s): eng - English
 Dates: 2018
 Publication Status: Issued
 Pages: 10
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: ISI: 000434111700069
DOI: 10.1029/2018GL077316
Other: BEX962
 Degree: -

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Title: Geophysical Research Letters
  Abbreviation : GRL
Source Genre: Journal
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Publ. Info: Washington, D.C. : American Geophysical Union / Wiley
Pages: - Volume / Issue: 45 (9) Sequence Number: - Start / End Page: 4371 - 4380 Identifier: ISSN: 0094-8276
CoNE: https://pure.mpg.de/cone/journals/resource/954925465217