Implications of improved representations of plant respiration in a changing climate
New global datasets of upper canopy vegetation respiration have become available and their impact on global carbon cycle models is unclear. Here, the authors show the implications of these parameterisations with a global gridded land model and report significantly higher global plant respiration est...
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Nature Portfolio
2017
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oai:doaj.org-article:c47dde1773d94cbb9054e437ec1c14a92021-12-02T14:40:48ZImplications of improved representations of plant respiration in a changing climate10.1038/s41467-017-01774-z2041-1723https://doaj.org/article/c47dde1773d94cbb9054e437ec1c14a92017-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-01774-zhttps://doaj.org/toc/2041-1723New global datasets of upper canopy vegetation respiration have become available and their impact on global carbon cycle models is unclear. Here, the authors show the implications of these parameterisations with a global gridded land model and report significantly higher global plant respiration estimates.Chris HuntingfordOwen K. AtkinAlberto Martinez-de la TorreLina M. MercadoMary A. HeskelAnna B. HarperKeith J. BloomfieldOdhran S. O’SullivanPeter B. ReichKirk R. WythersEthan E. ButlerMing ChenKevin L. GriffinPatrick MeirMark G. TjoelkerMatthew H. TurnbullStephen SitchAndy WiltshireYadvinder MalhiNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017) |
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Science Q Chris Huntingford Owen K. Atkin Alberto Martinez-de la Torre Lina M. Mercado Mary A. Heskel Anna B. Harper Keith J. Bloomfield Odhran S. O’Sullivan Peter B. Reich Kirk R. Wythers Ethan E. Butler Ming Chen Kevin L. Griffin Patrick Meir Mark G. Tjoelker Matthew H. Turnbull Stephen Sitch Andy Wiltshire Yadvinder Malhi Implications of improved representations of plant respiration in a changing climate |
description |
New global datasets of upper canopy vegetation respiration have become available and their impact on global carbon cycle models is unclear. Here, the authors show the implications of these parameterisations with a global gridded land model and report significantly higher global plant respiration estimates. |
format |
article |
author |
Chris Huntingford Owen K. Atkin Alberto Martinez-de la Torre Lina M. Mercado Mary A. Heskel Anna B. Harper Keith J. Bloomfield Odhran S. O’Sullivan Peter B. Reich Kirk R. Wythers Ethan E. Butler Ming Chen Kevin L. Griffin Patrick Meir Mark G. Tjoelker Matthew H. Turnbull Stephen Sitch Andy Wiltshire Yadvinder Malhi |
author_facet |
Chris Huntingford Owen K. Atkin Alberto Martinez-de la Torre Lina M. Mercado Mary A. Heskel Anna B. Harper Keith J. Bloomfield Odhran S. O’Sullivan Peter B. Reich Kirk R. Wythers Ethan E. Butler Ming Chen Kevin L. Griffin Patrick Meir Mark G. Tjoelker Matthew H. Turnbull Stephen Sitch Andy Wiltshire Yadvinder Malhi |
author_sort |
Chris Huntingford |
title |
Implications of improved representations of plant respiration in a changing climate |
title_short |
Implications of improved representations of plant respiration in a changing climate |
title_full |
Implications of improved representations of plant respiration in a changing climate |
title_fullStr |
Implications of improved representations of plant respiration in a changing climate |
title_full_unstemmed |
Implications of improved representations of plant respiration in a changing climate |
title_sort |
implications of improved representations of plant respiration in a changing climate |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/c47dde1773d94cbb9054e437ec1c14a9 |
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