Nitrogen-rich organic soils under warm well-drained conditions are global nitrous oxide emission hotspots

In a global field survey across a wide range of organic soils, the authors find that N2O flux can be predicted by models incorporating soil nitrate concentration (NO3 –), water content and temperature. N2O emission increases with NO3 – and temperature and follows a bell-shaped distribution with wate...

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Autores principales: Jaan Pärn, Jos T. A. Verhoeven, Klaus Butterbach-Bahl, Nancy B. Dise, Sami Ullah, Anto Aasa, Sergey Egorov, Mikk Espenberg, Järvi Järveoja, Jyrki Jauhiainen, Kuno Kasak, Leif Klemedtsson, Ain Kull, Fatima Laggoun-Défarge, Elena D. Lapshina, Annalea Lohila, Krista Lõhmus, Martin Maddison, William J. Mitsch, Christoph Müller, Ülo Niinemets, Bruce Osborne, Taavi Pae, Jüri-Ott Salm, Fotis Sgouridis, Kristina Sohar, Kaido Soosaar, Kathryn Storey, Alar Teemusk, Moses M. Tenywa, Julien Tournebize, Jaak Truu, Gert Veber, Jorge A. Villa, Seint Sann Zaw, Ülo Mander
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Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/30274e94d8804a37bdc071f3fa079409
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spelling oai:doaj.org-article:30274e94d8804a37bdc071f3fa0794092021-12-02T16:49:34ZNitrogen-rich organic soils under warm well-drained conditions are global nitrous oxide emission hotspots10.1038/s41467-018-03540-12041-1723https://doaj.org/article/30274e94d8804a37bdc071f3fa0794092018-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03540-1https://doaj.org/toc/2041-1723In a global field survey across a wide range of organic soils, the authors find that N2O flux can be predicted by models incorporating soil nitrate concentration (NO3 –), water content and temperature. N2O emission increases with NO3 – and temperature and follows a bell-shaped distribution with water content.Jaan PärnJos T. A. VerhoevenKlaus Butterbach-BahlNancy B. DiseSami UllahAnto AasaSergey EgorovMikk EspenbergJärvi JärveojaJyrki JauhiainenKuno KasakLeif KlemedtssonAin KullFatima Laggoun-DéfargeElena D. LapshinaAnnalea LohilaKrista LõhmusMartin MaddisonWilliam J. MitschChristoph MüllerÜlo NiinemetsBruce OsborneTaavi PaeJüri-Ott SalmFotis SgouridisKristina SoharKaido SoosaarKathryn StoreyAlar TeemuskMoses M. TenywaJulien TournebizeJaak TruuGert VeberJorge A. VillaSeint Sann ZawÜlo ManderNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-8 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jaan Pärn
Jos T. A. Verhoeven
Klaus Butterbach-Bahl
Nancy B. Dise
Sami Ullah
Anto Aasa
Sergey Egorov
Mikk Espenberg
Järvi Järveoja
Jyrki Jauhiainen
Kuno Kasak
Leif Klemedtsson
Ain Kull
Fatima Laggoun-Défarge
Elena D. Lapshina
Annalea Lohila
Krista Lõhmus
Martin Maddison
William J. Mitsch
Christoph Müller
Ülo Niinemets
Bruce Osborne
Taavi Pae
Jüri-Ott Salm
Fotis Sgouridis
Kristina Sohar
Kaido Soosaar
Kathryn Storey
Alar Teemusk
Moses M. Tenywa
Julien Tournebize
Jaak Truu
Gert Veber
Jorge A. Villa
Seint Sann Zaw
Ülo Mander
Nitrogen-rich organic soils under warm well-drained conditions are global nitrous oxide emission hotspots
description In a global field survey across a wide range of organic soils, the authors find that N2O flux can be predicted by models incorporating soil nitrate concentration (NO3 –), water content and temperature. N2O emission increases with NO3 – and temperature and follows a bell-shaped distribution with water content.
format article
author Jaan Pärn
Jos T. A. Verhoeven
Klaus Butterbach-Bahl
Nancy B. Dise
Sami Ullah
Anto Aasa
Sergey Egorov
Mikk Espenberg
Järvi Järveoja
Jyrki Jauhiainen
Kuno Kasak
Leif Klemedtsson
Ain Kull
Fatima Laggoun-Défarge
Elena D. Lapshina
Annalea Lohila
Krista Lõhmus
Martin Maddison
William J. Mitsch
Christoph Müller
Ülo Niinemets
Bruce Osborne
Taavi Pae
Jüri-Ott Salm
Fotis Sgouridis
Kristina Sohar
Kaido Soosaar
Kathryn Storey
Alar Teemusk
Moses M. Tenywa
Julien Tournebize
Jaak Truu
Gert Veber
Jorge A. Villa
Seint Sann Zaw
Ülo Mander
author_facet Jaan Pärn
Jos T. A. Verhoeven
Klaus Butterbach-Bahl
Nancy B. Dise
Sami Ullah
Anto Aasa
Sergey Egorov
Mikk Espenberg
Järvi Järveoja
Jyrki Jauhiainen
Kuno Kasak
Leif Klemedtsson
Ain Kull
Fatima Laggoun-Défarge
Elena D. Lapshina
Annalea Lohila
Krista Lõhmus
Martin Maddison
William J. Mitsch
Christoph Müller
Ülo Niinemets
Bruce Osborne
Taavi Pae
Jüri-Ott Salm
Fotis Sgouridis
Kristina Sohar
Kaido Soosaar
Kathryn Storey
Alar Teemusk
Moses M. Tenywa
Julien Tournebize
Jaak Truu
Gert Veber
Jorge A. Villa
Seint Sann Zaw
Ülo Mander
author_sort Jaan Pärn
title Nitrogen-rich organic soils under warm well-drained conditions are global nitrous oxide emission hotspots
title_short Nitrogen-rich organic soils under warm well-drained conditions are global nitrous oxide emission hotspots
title_full Nitrogen-rich organic soils under warm well-drained conditions are global nitrous oxide emission hotspots
title_fullStr Nitrogen-rich organic soils under warm well-drained conditions are global nitrous oxide emission hotspots
title_full_unstemmed Nitrogen-rich organic soils under warm well-drained conditions are global nitrous oxide emission hotspots
title_sort nitrogen-rich organic soils under warm well-drained conditions are global nitrous oxide emission hotspots
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/30274e94d8804a37bdc071f3fa079409
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