Substantial hysteresis in emergent temperature sensitivity of global wetland CH4 emissions
Wetland methane emissions contribute to global warming, and are oversimplified in climate models. Here the authors use eddy covariance measurements from 48 global sites to demonstrate seasonal hysteresis in methane-temperature relationships and suggest the importance of microbial processes.
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Nature Portfolio
2021
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oai:doaj.org-article:f3ee54eb6b4f4272ac1dc4d9c6d52c302021-12-02T18:03:13ZSubstantial hysteresis in emergent temperature sensitivity of global wetland CH4 emissions10.1038/s41467-021-22452-12041-1723https://doaj.org/article/f3ee54eb6b4f4272ac1dc4d9c6d52c302021-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22452-1https://doaj.org/toc/2041-1723Wetland methane emissions contribute to global warming, and are oversimplified in climate models. Here the authors use eddy covariance measurements from 48 global sites to demonstrate seasonal hysteresis in methane-temperature relationships and suggest the importance of microbial processes.Kuang-Yu ChangWilliam J. RileySara H. KnoxRobert B. JacksonGavin McNicolBenjamin PoulterMika AurelaDennis BaldocchiSheel BansalGil BohrerDavid I. CampbellAlessandro CescattiHousen ChuKyle B. DelwicheAnkur R. DesaiEugenie EuskirchenThomas FriborgMathias GoeckedeManuel HelbigKyle S. HemesTakashi HiranoHiroki IwataMinseok KangTrevor KeenanKen W. KraussAnnalea LohilaIvan MammarellaBhaskar MitraAkira MiyataMats B. NilssonAsko NoormetsWalter C. OechelDario PapaleMatthias PeichlMichele L. RebaJanne RinneBenjamin R. K. RunkleYoungryel RyuTorsten SachsKarina V. R. SchäferHans Peter SchmidNarasinha ShurpaliOliver SonnentagAngela C. I. TangMargaret S. TornCarlo TrottaEeva-Stiina TuittilaMasahito UeyamaRodrigo VargasTimo VesalaLisamarie Windham-MyersZhen ZhangDonatella ZonaNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-10 (2021) |
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Science Q Kuang-Yu Chang William J. Riley Sara H. Knox Robert B. Jackson Gavin McNicol Benjamin Poulter Mika Aurela Dennis Baldocchi Sheel Bansal Gil Bohrer David I. Campbell Alessandro Cescatti Housen Chu Kyle B. Delwiche Ankur R. Desai Eugenie Euskirchen Thomas Friborg Mathias Goeckede Manuel Helbig Kyle S. Hemes Takashi Hirano Hiroki Iwata Minseok Kang Trevor Keenan Ken W. Krauss Annalea Lohila Ivan Mammarella Bhaskar Mitra Akira Miyata Mats B. Nilsson Asko Noormets Walter C. Oechel Dario Papale Matthias Peichl Michele L. Reba Janne Rinne Benjamin R. K. Runkle Youngryel Ryu Torsten Sachs Karina V. R. Schäfer Hans Peter Schmid Narasinha Shurpali Oliver Sonnentag Angela C. I. Tang Margaret S. Torn Carlo Trotta Eeva-Stiina Tuittila Masahito Ueyama Rodrigo Vargas Timo Vesala Lisamarie Windham-Myers Zhen Zhang Donatella Zona Substantial hysteresis in emergent temperature sensitivity of global wetland CH4 emissions |
description |
Wetland methane emissions contribute to global warming, and are oversimplified in climate models. Here the authors use eddy covariance measurements from 48 global sites to demonstrate seasonal hysteresis in methane-temperature relationships and suggest the importance of microbial processes. |
format |
article |
author |
Kuang-Yu Chang William J. Riley Sara H. Knox Robert B. Jackson Gavin McNicol Benjamin Poulter Mika Aurela Dennis Baldocchi Sheel Bansal Gil Bohrer David I. Campbell Alessandro Cescatti Housen Chu Kyle B. Delwiche Ankur R. Desai Eugenie Euskirchen Thomas Friborg Mathias Goeckede Manuel Helbig Kyle S. Hemes Takashi Hirano Hiroki Iwata Minseok Kang Trevor Keenan Ken W. Krauss Annalea Lohila Ivan Mammarella Bhaskar Mitra Akira Miyata Mats B. Nilsson Asko Noormets Walter C. Oechel Dario Papale Matthias Peichl Michele L. Reba Janne Rinne Benjamin R. K. Runkle Youngryel Ryu Torsten Sachs Karina V. R. Schäfer Hans Peter Schmid Narasinha Shurpali Oliver Sonnentag Angela C. I. Tang Margaret S. Torn Carlo Trotta Eeva-Stiina Tuittila Masahito Ueyama Rodrigo Vargas Timo Vesala Lisamarie Windham-Myers Zhen Zhang Donatella Zona |
author_facet |
Kuang-Yu Chang William J. Riley Sara H. Knox Robert B. Jackson Gavin McNicol Benjamin Poulter Mika Aurela Dennis Baldocchi Sheel Bansal Gil Bohrer David I. Campbell Alessandro Cescatti Housen Chu Kyle B. Delwiche Ankur R. Desai Eugenie Euskirchen Thomas Friborg Mathias Goeckede Manuel Helbig Kyle S. Hemes Takashi Hirano Hiroki Iwata Minseok Kang Trevor Keenan Ken W. Krauss Annalea Lohila Ivan Mammarella Bhaskar Mitra Akira Miyata Mats B. Nilsson Asko Noormets Walter C. Oechel Dario Papale Matthias Peichl Michele L. Reba Janne Rinne Benjamin R. K. Runkle Youngryel Ryu Torsten Sachs Karina V. R. Schäfer Hans Peter Schmid Narasinha Shurpali Oliver Sonnentag Angela C. I. Tang Margaret S. Torn Carlo Trotta Eeva-Stiina Tuittila Masahito Ueyama Rodrigo Vargas Timo Vesala Lisamarie Windham-Myers Zhen Zhang Donatella Zona |
author_sort |
Kuang-Yu Chang |
title |
Substantial hysteresis in emergent temperature sensitivity of global wetland CH4 emissions |
title_short |
Substantial hysteresis in emergent temperature sensitivity of global wetland CH4 emissions |
title_full |
Substantial hysteresis in emergent temperature sensitivity of global wetland CH4 emissions |
title_fullStr |
Substantial hysteresis in emergent temperature sensitivity of global wetland CH4 emissions |
title_full_unstemmed |
Substantial hysteresis in emergent temperature sensitivity of global wetland CH4 emissions |
title_sort |
substantial hysteresis in emergent temperature sensitivity of global wetland ch4 emissions |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/f3ee54eb6b4f4272ac1dc4d9c6d52c30 |
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