The role of highly oxygenated organic molecules in the Boreal aerosol-cloud-climate system

Forests emit compounds into the atmosphere that are oxidized into highly oxygenated molecules that serve as precursors for cloud condensation nuclei–a process that impacts the climate, but is poorly represented in models. Here the authors create a new model that accurately depicts highly oxygenated...

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Autores principales: Pontus Roldin, Mikael Ehn, Theo Kurtén, Tinja Olenius, Matti P. Rissanen, Nina Sarnela, Jonas Elm, Pekka Rantala, Liqing Hao, Noora Hyttinen, Liine Heikkinen, Douglas R. Worsnop, Lukas Pichelstorfer, Carlton Xavier, Petri Clusius, Emilie Öström, Tuukka Petäjä, Markku Kulmala, Hanna Vehkamäki, Annele Virtanen, Ilona Riipinen, Michael Boy
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/44d7925ecfeb40f08bf4925e80ac9daf
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spelling oai:doaj.org-article:44d7925ecfeb40f08bf4925e80ac9daf2021-12-02T16:58:00ZThe role of highly oxygenated organic molecules in the Boreal aerosol-cloud-climate system10.1038/s41467-019-12338-82041-1723https://doaj.org/article/44d7925ecfeb40f08bf4925e80ac9daf2019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12338-8https://doaj.org/toc/2041-1723Forests emit compounds into the atmosphere that are oxidized into highly oxygenated molecules that serve as precursors for cloud condensation nuclei–a process that impacts the climate, but is poorly represented in models. Here the authors create a new model that accurately depicts highly oxygenated molecule and climate dynamics over Boreal forests.Pontus RoldinMikael EhnTheo KurténTinja OleniusMatti P. RissanenNina SarnelaJonas ElmPekka RantalaLiqing HaoNoora HyttinenLiine HeikkinenDouglas R. WorsnopLukas PichelstorferCarlton XavierPetri ClusiusEmilie ÖströmTuukka PetäjäMarkku KulmalaHanna VehkamäkiAnnele VirtanenIlona RiipinenMichael BoyNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-15 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Pontus Roldin
Mikael Ehn
Theo Kurtén
Tinja Olenius
Matti P. Rissanen
Nina Sarnela
Jonas Elm
Pekka Rantala
Liqing Hao
Noora Hyttinen
Liine Heikkinen
Douglas R. Worsnop
Lukas Pichelstorfer
Carlton Xavier
Petri Clusius
Emilie Öström
Tuukka Petäjä
Markku Kulmala
Hanna Vehkamäki
Annele Virtanen
Ilona Riipinen
Michael Boy
The role of highly oxygenated organic molecules in the Boreal aerosol-cloud-climate system
description Forests emit compounds into the atmosphere that are oxidized into highly oxygenated molecules that serve as precursors for cloud condensation nuclei–a process that impacts the climate, but is poorly represented in models. Here the authors create a new model that accurately depicts highly oxygenated molecule and climate dynamics over Boreal forests.
format article
author Pontus Roldin
Mikael Ehn
Theo Kurtén
Tinja Olenius
Matti P. Rissanen
Nina Sarnela
Jonas Elm
Pekka Rantala
Liqing Hao
Noora Hyttinen
Liine Heikkinen
Douglas R. Worsnop
Lukas Pichelstorfer
Carlton Xavier
Petri Clusius
Emilie Öström
Tuukka Petäjä
Markku Kulmala
Hanna Vehkamäki
Annele Virtanen
Ilona Riipinen
Michael Boy
author_facet Pontus Roldin
Mikael Ehn
Theo Kurtén
Tinja Olenius
Matti P. Rissanen
Nina Sarnela
Jonas Elm
Pekka Rantala
Liqing Hao
Noora Hyttinen
Liine Heikkinen
Douglas R. Worsnop
Lukas Pichelstorfer
Carlton Xavier
Petri Clusius
Emilie Öström
Tuukka Petäjä
Markku Kulmala
Hanna Vehkamäki
Annele Virtanen
Ilona Riipinen
Michael Boy
author_sort Pontus Roldin
title The role of highly oxygenated organic molecules in the Boreal aerosol-cloud-climate system
title_short The role of highly oxygenated organic molecules in the Boreal aerosol-cloud-climate system
title_full The role of highly oxygenated organic molecules in the Boreal aerosol-cloud-climate system
title_fullStr The role of highly oxygenated organic molecules in the Boreal aerosol-cloud-climate system
title_full_unstemmed The role of highly oxygenated organic molecules in the Boreal aerosol-cloud-climate system
title_sort role of highly oxygenated organic molecules in the boreal aerosol-cloud-climate system
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/44d7925ecfeb40f08bf4925e80ac9daf
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