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Ion-induced nucleation of pure biogenic particles
Atmospheric aerosols and their effect on clouds are thought to be important for anthropogenic radiative forcing of the climate, yet remain poorly understood. Globally, around half of cloud condensation nuclei originate from nucleation of atmospheric vapours. It is thought that sulfuric acid is essen...
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Lenguaje: | eng |
Publicado: |
2016
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1038/nature17953 http://cds.cern.ch/record/2156626 |
_version_ | 1780950691185950720 |
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author | Kirkby, Jasper Duplissy, Jonathan Sengupta, Kamalika Frege, Carla Gordon, Hamish Williamson, Christina Heinritzi, Martin Simon, Mario Yan, Chao Almeida, João Tröstl, Jasmin Nieminen, Tuomo Ortega, Ismael K Wagner, Robert Adamov, Alexey Amorim, Antonio Bernhammer, Anne-Kathrin Bianchi, Federico Breitenlechner, Martin Brilke, Sophia Chen, Xuemeng Craven, Jill Dias, antonio Ehrhart, Sebastian Flagan, Richard C Franchin, Alessandro Fuchs, Claudia Guida, Roberto Hakala, Jani Hoyle, Christopher R Jokinen, Tuija Junninen, Heikki Kangasluoma, Juha Kim, Jaeseok Krapf, Manuel Kürten, andreas Laaksonen, Ari Lehtipalo, Katrianne Makhmutov, Vladimir Mathot, Serge Molteni, Ugo Onnela, antti Peräkylä, Otso Piel, Felix Petäjä, Tuukka Praplan, Arnaud P Pringle, Kirsty Rap, Alexandru Richards, Nigel A D Riipinen, Ilona Rissanen, Matti P Rondo, Linda Sarnela, Nina Schobesberger, Siegfried Scott, Catherine E Seinfeld, John H Sipilä, Mikko Steiner, Gerhard Stozhkov, Yuri Stratmann, Frank Tomé, Antonio Virtanen, Annele Vogel, Alexander L Wagner, Andrea C Wagner, Paul E Weingartner, Ernest Wimmer, Daniela Winkler, Paul M Ye, Penglin Zhang, Xuan Hansel, Armin Dommen, Josef Donahue, Neil M Worsnop, Douglas R Baltensperger, Urs Kulmala, Markku Carslaw, Kenneth S Curtius, Joachim |
author_facet | Kirkby, Jasper Duplissy, Jonathan Sengupta, Kamalika Frege, Carla Gordon, Hamish Williamson, Christina Heinritzi, Martin Simon, Mario Yan, Chao Almeida, João Tröstl, Jasmin Nieminen, Tuomo Ortega, Ismael K Wagner, Robert Adamov, Alexey Amorim, Antonio Bernhammer, Anne-Kathrin Bianchi, Federico Breitenlechner, Martin Brilke, Sophia Chen, Xuemeng Craven, Jill Dias, antonio Ehrhart, Sebastian Flagan, Richard C Franchin, Alessandro Fuchs, Claudia Guida, Roberto Hakala, Jani Hoyle, Christopher R Jokinen, Tuija Junninen, Heikki Kangasluoma, Juha Kim, Jaeseok Krapf, Manuel Kürten, andreas Laaksonen, Ari Lehtipalo, Katrianne Makhmutov, Vladimir Mathot, Serge Molteni, Ugo Onnela, antti Peräkylä, Otso Piel, Felix Petäjä, Tuukka Praplan, Arnaud P Pringle, Kirsty Rap, Alexandru Richards, Nigel A D Riipinen, Ilona Rissanen, Matti P Rondo, Linda Sarnela, Nina Schobesberger, Siegfried Scott, Catherine E Seinfeld, John H Sipilä, Mikko Steiner, Gerhard Stozhkov, Yuri Stratmann, Frank Tomé, Antonio Virtanen, Annele Vogel, Alexander L Wagner, Andrea C Wagner, Paul E Weingartner, Ernest Wimmer, Daniela Winkler, Paul M Ye, Penglin Zhang, Xuan Hansel, Armin Dommen, Josef Donahue, Neil M Worsnop, Douglas R Baltensperger, Urs Kulmala, Markku Carslaw, Kenneth S Curtius, Joachim |
author_sort | Kirkby, Jasper |
collection | CERN |
description | Atmospheric aerosols and their effect on clouds are thought to be important for anthropogenic radiative forcing of the climate, yet remain poorly understood. Globally, around half of cloud condensation nuclei originate from nucleation of atmospheric vapours. It is thought that sulfuric acid is essential to initiate most particle formation in the atmosphere and that ions have a relatively minor role. Some laboratory studies, however, have reported organic particle formation without the intentional addition of sulfuric acid, although contamination could not be excluded. Here we present evidence for the formation of aerosol particles from highly oxidized biogenic vapours in the absence of sulfuric acid in a large chamber under atmospheric conditions. The highly oxygenated molecules (HOMs) are produced by ozonolysis of $\alpha$-pinene. We find that ions from Galactic cosmic rays increase the nucleation rate by one to two orders of magnitude compared with neutral nucleation. Our experimental findings are supported by quantum chemical calculations of the cluster binding energies of representative HOMs. Ion-induced nucleation of pure organic particles constitutes a potentially widespread source of aerosol particles in terrestrial environments with low sulfuric acid pollution. |
id | cern-2156626 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2016 |
record_format | invenio |
spelling | cern-21566262022-08-10T12:36:26Zdoi:10.1038/nature17953http://cds.cern.ch/record/2156626engKirkby, JasperDuplissy, JonathanSengupta, KamalikaFrege, CarlaGordon, HamishWilliamson, ChristinaHeinritzi, MartinSimon, MarioYan, ChaoAlmeida, JoãoTröstl, JasminNieminen, TuomoOrtega, Ismael KWagner, RobertAdamov, AlexeyAmorim, AntonioBernhammer, Anne-KathrinBianchi, FedericoBreitenlechner, MartinBrilke, SophiaChen, XuemengCraven, JillDias, antonioEhrhart, SebastianFlagan, Richard CFranchin, AlessandroFuchs, ClaudiaGuida, RobertoHakala, JaniHoyle, Christopher RJokinen, TuijaJunninen, HeikkiKangasluoma, JuhaKim, JaeseokKrapf, ManuelKürten, andreasLaaksonen, AriLehtipalo, KatrianneMakhmutov, VladimirMathot, SergeMolteni, UgoOnnela, anttiPeräkylä, OtsoPiel, FelixPetäjä, TuukkaPraplan, Arnaud PPringle, KirstyRap, AlexandruRichards, Nigel A DRiipinen, IlonaRissanen, Matti PRondo, LindaSarnela, NinaSchobesberger, SiegfriedScott, Catherine ESeinfeld, John HSipilä, MikkoSteiner, GerhardStozhkov, YuriStratmann, FrankTomé, AntonioVirtanen, AnneleVogel, Alexander LWagner, Andrea CWagner, Paul EWeingartner, ErnestWimmer, DanielaWinkler, Paul MYe, PenglinZhang, XuanHansel, ArminDommen, JosefDonahue, Neil MWorsnop, Douglas RBaltensperger, UrsKulmala, MarkkuCarslaw, Kenneth SCurtius, JoachimIon-induced nucleation of pure biogenic particlesChemical Physics and ChemistryAtmospheric aerosols and their effect on clouds are thought to be important for anthropogenic radiative forcing of the climate, yet remain poorly understood. Globally, around half of cloud condensation nuclei originate from nucleation of atmospheric vapours. It is thought that sulfuric acid is essential to initiate most particle formation in the atmosphere and that ions have a relatively minor role. Some laboratory studies, however, have reported organic particle formation without the intentional addition of sulfuric acid, although contamination could not be excluded. Here we present evidence for the formation of aerosol particles from highly oxidized biogenic vapours in the absence of sulfuric acid in a large chamber under atmospheric conditions. The highly oxygenated molecules (HOMs) are produced by ozonolysis of $\alpha$-pinene. We find that ions from Galactic cosmic rays increase the nucleation rate by one to two orders of magnitude compared with neutral nucleation. Our experimental findings are supported by quantum chemical calculations of the cluster binding energies of representative HOMs. Ion-induced nucleation of pure organic particles constitutes a potentially widespread source of aerosol particles in terrestrial environments with low sulfuric acid pollution.oai:cds.cern.ch:21566262016 |
spellingShingle | Chemical Physics and Chemistry Kirkby, Jasper Duplissy, Jonathan Sengupta, Kamalika Frege, Carla Gordon, Hamish Williamson, Christina Heinritzi, Martin Simon, Mario Yan, Chao Almeida, João Tröstl, Jasmin Nieminen, Tuomo Ortega, Ismael K Wagner, Robert Adamov, Alexey Amorim, Antonio Bernhammer, Anne-Kathrin Bianchi, Federico Breitenlechner, Martin Brilke, Sophia Chen, Xuemeng Craven, Jill Dias, antonio Ehrhart, Sebastian Flagan, Richard C Franchin, Alessandro Fuchs, Claudia Guida, Roberto Hakala, Jani Hoyle, Christopher R Jokinen, Tuija Junninen, Heikki Kangasluoma, Juha Kim, Jaeseok Krapf, Manuel Kürten, andreas Laaksonen, Ari Lehtipalo, Katrianne Makhmutov, Vladimir Mathot, Serge Molteni, Ugo Onnela, antti Peräkylä, Otso Piel, Felix Petäjä, Tuukka Praplan, Arnaud P Pringle, Kirsty Rap, Alexandru Richards, Nigel A D Riipinen, Ilona Rissanen, Matti P Rondo, Linda Sarnela, Nina Schobesberger, Siegfried Scott, Catherine E Seinfeld, John H Sipilä, Mikko Steiner, Gerhard Stozhkov, Yuri Stratmann, Frank Tomé, Antonio Virtanen, Annele Vogel, Alexander L Wagner, Andrea C Wagner, Paul E Weingartner, Ernest Wimmer, Daniela Winkler, Paul M Ye, Penglin Zhang, Xuan Hansel, Armin Dommen, Josef Donahue, Neil M Worsnop, Douglas R Baltensperger, Urs Kulmala, Markku Carslaw, Kenneth S Curtius, Joachim Ion-induced nucleation of pure biogenic particles |
title | Ion-induced nucleation of pure biogenic particles |
title_full | Ion-induced nucleation of pure biogenic particles |
title_fullStr | Ion-induced nucleation of pure biogenic particles |
title_full_unstemmed | Ion-induced nucleation of pure biogenic particles |
title_short | Ion-induced nucleation of pure biogenic particles |
title_sort | ion-induced nucleation of pure biogenic particles |
topic | Chemical Physics and Chemistry |
url | https://dx.doi.org/10.1038/nature17953 http://cds.cern.ch/record/2156626 |
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