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Neutral molecular cluster formation of sulfuric acid–dimethylamine observed in real time under atmospheric conditions

For atmospheric sulfuric acid (SA) concentrations the presence of dimethylamine (DMA) at mixing ratios of several parts per trillion by volume can explain observed boundary layer new particle formation rates. However, the concentration and molecular composition of the neutral (uncharged) clusters ha...

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Autores principales: Kürten, Andreas, Jokinen, Tuija, Simon, Mario, Sipilä, Mikko, Sarnela, Nina, Junninen, Heikki, Adamov, Alexey, Almeida, João, Amorim, Antonio, Bianchi, Federico, Breitenlechner, Martin, Dommen, Josef, Donahue, Neil M, Duplissy, Jonathan, Ehrhart, Sebastian, Flagan, Richard C, Franchin, Alessandro, Hakala, Jani, Hansel, Armin, Heinritzi, Martin, Hutterli, Manuel, Kangasluoma, Juha, Kirkby, Jasper, Laaksonen, Ari, Lehtipalo, Katrianne, Leiminger, Markus, Makhmutov, Vladimir, Mathot, Serge, Onnela, Antti, Petäjä, Tuukka, Praplan, Arnaud P, Riccobono, Francesco, Rissanen, Matti P, Rondo, Linda, Schobesberger, Siegfried, Seinfeld, John H, Steiner, Gerhard, Tomé, António, Tröstl, Jasmin, Winkler, Paul M, Williamson, Christina, Wimmer, Daniela, Ye, Penglin, Baltensperger, Urs, Carslaw, Kenneth S, Kulmala, Markku, Worsnop, Douglas R, Curtius, Joachim
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1073/pnas.1404853111
http://cds.cern.ch/record/1971442
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author Kürten, Andreas
Jokinen, Tuija
Simon, Mario
Sipilä, Mikko
Sarnela, Nina
Junninen, Heikki
Adamov, Alexey
Almeida, João
Amorim, Antonio
Bianchi, Federico
Breitenlechner, Martin
Dommen, Josef
Donahue, Neil M
Duplissy, Jonathan
Ehrhart, Sebastian
Flagan, Richard C
Franchin, Alessandro
Hakala, Jani
Hansel, Armin
Heinritzi, Martin
Hutterli, Manuel
Kangasluoma, Juha
Kirkby, Jasper
Laaksonen, Ari
Lehtipalo, Katrianne
Leiminger, Markus
Makhmutov, Vladimir
Mathot, Serge
Onnela, Antti
Petäjä, Tuukka
Praplan, Arnaud P
Riccobono, Francesco
Rissanen, Matti P
Rondo, Linda
Schobesberger, Siegfried
Seinfeld, John H
Steiner, Gerhard
Tomé, António
Tröstl, Jasmin
Winkler, Paul M
Williamson, Christina
Wimmer, Daniela
Ye, Penglin
Baltensperger, Urs
Carslaw, Kenneth S
Kulmala, Markku
Worsnop, Douglas R
Curtius, Joachim
author_facet Kürten, Andreas
Jokinen, Tuija
Simon, Mario
Sipilä, Mikko
Sarnela, Nina
Junninen, Heikki
Adamov, Alexey
Almeida, João
Amorim, Antonio
Bianchi, Federico
Breitenlechner, Martin
Dommen, Josef
Donahue, Neil M
Duplissy, Jonathan
Ehrhart, Sebastian
Flagan, Richard C
Franchin, Alessandro
Hakala, Jani
Hansel, Armin
Heinritzi, Martin
Hutterli, Manuel
Kangasluoma, Juha
Kirkby, Jasper
Laaksonen, Ari
Lehtipalo, Katrianne
Leiminger, Markus
Makhmutov, Vladimir
Mathot, Serge
Onnela, Antti
Petäjä, Tuukka
Praplan, Arnaud P
Riccobono, Francesco
Rissanen, Matti P
Rondo, Linda
Schobesberger, Siegfried
Seinfeld, John H
Steiner, Gerhard
Tomé, António
Tröstl, Jasmin
Winkler, Paul M
Williamson, Christina
Wimmer, Daniela
Ye, Penglin
Baltensperger, Urs
Carslaw, Kenneth S
Kulmala, Markku
Worsnop, Douglas R
Curtius, Joachim
author_sort Kürten, Andreas
collection CERN
description For atmospheric sulfuric acid (SA) concentrations the presence of dimethylamine (DMA) at mixing ratios of several parts per trillion by volume can explain observed boundary layer new particle formation rates. However, the concentration and molecular composition of the neutral (uncharged) clusters have not been reported so far due to the lack of suitable instrumentation. Here we report on experiments from the Cosmics Leaving Outdoor Droplets chamber at the European Organization for Nuclear Research revealing the formation of neutral particles containing up to 14 SA and 16 DMA molecules, corresponding to a mobility diameter of about 2 nm, under atmospherically relevant conditions. These measurements bridge the gap between the molecular and particle perspectives of nucleation, revealing the fundamental processes involved in particle formation and growth. The neutral clusters are found to form at or close to the kinetic limit where particle formation is limited only by the collision rate of SA molecules. Even though the neutral particles are stable against evaporation from the SA dimer onward, the formation rates of particles at 1.7-nm size, which contain about 10 SA molecules, are up to 4 orders of magnitude smaller compared with those of the dimer due to coagulation and wall loss of particles before they reach 1.7 nm in diameter. This demonstrates that neither the atmospheric particle formation rate nor its dependence on SA can simply be interpreted in terms of cluster evaporation or the molecular composition of a critical nucleus.
id cern-1971442
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-19714422021-05-03T20:23:45Zdoi:10.1073/pnas.1404853111http://cds.cern.ch/record/1971442engKürten, AndreasJokinen, TuijaSimon, MarioSipilä, MikkoSarnela, NinaJunninen, HeikkiAdamov, AlexeyAlmeida, JoãoAmorim, AntonioBianchi, FedericoBreitenlechner, MartinDommen, JosefDonahue, Neil MDuplissy, JonathanEhrhart, SebastianFlagan, Richard CFranchin, AlessandroHakala, JaniHansel, ArminHeinritzi, MartinHutterli, ManuelKangasluoma, JuhaKirkby, JasperLaaksonen, AriLehtipalo, KatrianneLeiminger, MarkusMakhmutov, VladimirMathot, SergeOnnela, AnttiPetäjä, TuukkaPraplan, Arnaud PRiccobono, FrancescoRissanen, Matti PRondo, LindaSchobesberger, SiegfriedSeinfeld, John HSteiner, GerhardTomé, AntónioTröstl, JasminWinkler, Paul MWilliamson, ChristinaWimmer, DanielaYe, PenglinBaltensperger, UrsCarslaw, Kenneth SKulmala, MarkkuWorsnop, Douglas RCurtius, JoachimNeutral molecular cluster formation of sulfuric acid–dimethylamine observed in real time under atmospheric conditionsChemical Physics and ChemistryFor atmospheric sulfuric acid (SA) concentrations the presence of dimethylamine (DMA) at mixing ratios of several parts per trillion by volume can explain observed boundary layer new particle formation rates. However, the concentration and molecular composition of the neutral (uncharged) clusters have not been reported so far due to the lack of suitable instrumentation. Here we report on experiments from the Cosmics Leaving Outdoor Droplets chamber at the European Organization for Nuclear Research revealing the formation of neutral particles containing up to 14 SA and 16 DMA molecules, corresponding to a mobility diameter of about 2 nm, under atmospherically relevant conditions. These measurements bridge the gap between the molecular and particle perspectives of nucleation, revealing the fundamental processes involved in particle formation and growth. The neutral clusters are found to form at or close to the kinetic limit where particle formation is limited only by the collision rate of SA molecules. Even though the neutral particles are stable against evaporation from the SA dimer onward, the formation rates of particles at 1.7-nm size, which contain about 10 SA molecules, are up to 4 orders of magnitude smaller compared with those of the dimer due to coagulation and wall loss of particles before they reach 1.7 nm in diameter. This demonstrates that neither the atmospheric particle formation rate nor its dependence on SA can simply be interpreted in terms of cluster evaporation or the molecular composition of a critical nucleus.arXiv:1509.03474oai:cds.cern.ch:19714422014
spellingShingle Chemical Physics and Chemistry
Kürten, Andreas
Jokinen, Tuija
Simon, Mario
Sipilä, Mikko
Sarnela, Nina
Junninen, Heikki
Adamov, Alexey
Almeida, João
Amorim, Antonio
Bianchi, Federico
Breitenlechner, Martin
Dommen, Josef
Donahue, Neil M
Duplissy, Jonathan
Ehrhart, Sebastian
Flagan, Richard C
Franchin, Alessandro
Hakala, Jani
Hansel, Armin
Heinritzi, Martin
Hutterli, Manuel
Kangasluoma, Juha
Kirkby, Jasper
Laaksonen, Ari
Lehtipalo, Katrianne
Leiminger, Markus
Makhmutov, Vladimir
Mathot, Serge
Onnela, Antti
Petäjä, Tuukka
Praplan, Arnaud P
Riccobono, Francesco
Rissanen, Matti P
Rondo, Linda
Schobesberger, Siegfried
Seinfeld, John H
Steiner, Gerhard
Tomé, António
Tröstl, Jasmin
Winkler, Paul M
Williamson, Christina
Wimmer, Daniela
Ye, Penglin
Baltensperger, Urs
Carslaw, Kenneth S
Kulmala, Markku
Worsnop, Douglas R
Curtius, Joachim
Neutral molecular cluster formation of sulfuric acid–dimethylamine observed in real time under atmospheric conditions
title Neutral molecular cluster formation of sulfuric acid–dimethylamine observed in real time under atmospheric conditions
title_full Neutral molecular cluster formation of sulfuric acid–dimethylamine observed in real time under atmospheric conditions
title_fullStr Neutral molecular cluster formation of sulfuric acid–dimethylamine observed in real time under atmospheric conditions
title_full_unstemmed Neutral molecular cluster formation of sulfuric acid–dimethylamine observed in real time under atmospheric conditions
title_short Neutral molecular cluster formation of sulfuric acid–dimethylamine observed in real time under atmospheric conditions
title_sort neutral molecular cluster formation of sulfuric acid–dimethylamine observed in real time under atmospheric conditions
topic Chemical Physics and Chemistry
url https://dx.doi.org/10.1073/pnas.1404853111
http://cds.cern.ch/record/1971442
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