Stability of peatland carbon to rising temperatures

Peatlands store large quantities of carbon, yet their response to deep warming remains unexplored. Here, Wilsonet al. perform large scale ecosystem manipulation to reveal deep peat heating exponentially increases CH4emissions due to surface processes, but that deep carbon remains relatively stable.

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Autores principales: R. M. Wilson, A. M. Hopple, M. M. Tfaily, S. D. Sebestyen, C. W. Schadt, L. Pfeifer-Meister, C. Medvedeff, K. J. McFarlane, J. E. Kostka, M. Kolton, R.K. Kolka, L. A. Kluber, J. K. Keller, T. P. Guilderson, N. A. Griffiths, J. P. Chanton, S. D. Bridgham, P. J. Hanson
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/fe49eb84e34a42dc90e5af8549af46ae
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spelling oai:doaj.org-article:fe49eb84e34a42dc90e5af8549af46ae2021-12-02T15:34:10ZStability of peatland carbon to rising temperatures10.1038/ncomms137232041-1723https://doaj.org/article/fe49eb84e34a42dc90e5af8549af46ae2016-12-01T00:00:00Zhttps://doi.org/10.1038/ncomms13723https://doaj.org/toc/2041-1723Peatlands store large quantities of carbon, yet their response to deep warming remains unexplored. Here, Wilsonet al. perform large scale ecosystem manipulation to reveal deep peat heating exponentially increases CH4emissions due to surface processes, but that deep carbon remains relatively stable.R. M. WilsonA. M. HoppleM. M. TfailyS. D. SebestyenC. W. SchadtL. Pfeifer-MeisterC. MedvedeffK. J. McFarlaneJ. E. KostkaM. KoltonR.K. KolkaL. A. KluberJ. K. KellerT. P. GuildersonN. A. GriffithsJ. P. ChantonS. D. BridghamP. J. HansonNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-10 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
R. M. Wilson
A. M. Hopple
M. M. Tfaily
S. D. Sebestyen
C. W. Schadt
L. Pfeifer-Meister
C. Medvedeff
K. J. McFarlane
J. E. Kostka
M. Kolton
R.K. Kolka
L. A. Kluber
J. K. Keller
T. P. Guilderson
N. A. Griffiths
J. P. Chanton
S. D. Bridgham
P. J. Hanson
Stability of peatland carbon to rising temperatures
description Peatlands store large quantities of carbon, yet their response to deep warming remains unexplored. Here, Wilsonet al. perform large scale ecosystem manipulation to reveal deep peat heating exponentially increases CH4emissions due to surface processes, but that deep carbon remains relatively stable.
format article
author R. M. Wilson
A. M. Hopple
M. M. Tfaily
S. D. Sebestyen
C. W. Schadt
L. Pfeifer-Meister
C. Medvedeff
K. J. McFarlane
J. E. Kostka
M. Kolton
R.K. Kolka
L. A. Kluber
J. K. Keller
T. P. Guilderson
N. A. Griffiths
J. P. Chanton
S. D. Bridgham
P. J. Hanson
author_facet R. M. Wilson
A. M. Hopple
M. M. Tfaily
S. D. Sebestyen
C. W. Schadt
L. Pfeifer-Meister
C. Medvedeff
K. J. McFarlane
J. E. Kostka
M. Kolton
R.K. Kolka
L. A. Kluber
J. K. Keller
T. P. Guilderson
N. A. Griffiths
J. P. Chanton
S. D. Bridgham
P. J. Hanson
author_sort R. M. Wilson
title Stability of peatland carbon to rising temperatures
title_short Stability of peatland carbon to rising temperatures
title_full Stability of peatland carbon to rising temperatures
title_fullStr Stability of peatland carbon to rising temperatures
title_full_unstemmed Stability of peatland carbon to rising temperatures
title_sort stability of peatland carbon to rising temperatures
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/fe49eb84e34a42dc90e5af8549af46ae
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