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Size-dependent influence of NO$_{x}$ on the growth rates of organic aerosol particles

Atmospheric new-particle formation (NPF) affects climate by contributing to a large fraction of the cloud condensation nuclei (CCN). Highly oxygenated organic molecules (HOMs) drive the early particle growth and therefore substantially influence the survival of newly formed particles to CCN. Nitroge...

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Detalles Bibliográficos
Autores principales: Yan, C, Nie, W, Vogel, A L, Dada, L, Lehtipalo, K, Stolzenburg, D, Wagner, R, Rissanen, M P, Xiao, M, Ahonen, L, Fischer, L, Rose, C, Bianchi, F, Gordon, H, Simon, M, Heinritzi, M, Garmash, O, Roldin, P, Dias, A, Ye, P, Hofbauer, V, Amorim, A, Bauer, P S, Bergen, A, Bernhammer, A K, Breitenlechner, M, Brilke, S, Buchholz, A, Mazon, S Buenrostro, Canagaratna, M R, Chen, X, Ding, A, Dommen, J, Draper, D C, Duplissy, J, Frege, C, Heyn, C, Guida, R, Hakala, J, Heikkinen, L, Hoyle, C R, Jokinen, T, Kangasluoma, J, Kirkby, J, Kontkanen, J, Kürten, A, Lawler, M J, Mai, H, Mathot, S, Mauldin, R L, Molteni, U, Nichman, L, Nieminen, T, Nowak, J, Ojdanic, A, Onnela, A, Pajunoja, A, Petäjä, T, Piel, F, Quéléver, L L J, Sarnela, N, Schallhart, S, Sengupta, K, Sipilä, M, Tomé, A, Tröstl, J, Väisänen, O, Wagner, A C, Ylisirniö, A, Zha, Q, Baltensperger, U, Carslaw, K S, Curtius, J, Flagan, R C, Hansel, A, Riipinen, I, Smith, J N, Virtanen, A, Winkler, P M, Donahue, N M, Kerminen, V M, Kulmala, M, Ehn, M, Worsnop, D R
Lenguaje:eng
Publicado: 2020
Acceso en línea:https://dx.doi.org/10.1126/sciadv.aay4945
http://cds.cern.ch/record/2750786
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author Yan, C
Nie, W
Vogel, A L
Dada, L
Lehtipalo, K
Stolzenburg, D
Wagner, R
Rissanen, M P
Xiao, M
Ahonen, L
Fischer, L
Rose, C
Bianchi, F
Gordon, H
Simon, M
Heinritzi, M
Garmash, O
Roldin, P
Dias, A
Ye, P
Hofbauer, V
Amorim, A
Bauer, P S
Bergen, A
Bernhammer, A K
Breitenlechner, M
Brilke, S
Buchholz, A
Mazon, S Buenrostro
Canagaratna, M R
Chen, X
Ding, A
Dommen, J
Draper, D C
Duplissy, J
Frege, C
Heyn, C
Guida, R
Hakala, J
Heikkinen, L
Hoyle, C R
Jokinen, T
Kangasluoma, J
Kirkby, J
Kontkanen, J
Kürten, A
Lawler, M J
Mai, H
Mathot, S
Mauldin, R L
Molteni, U
Nichman, L
Nieminen, T
Nowak, J
Ojdanic, A
Onnela, A
Pajunoja, A
Petäjä, T
Piel, F
Quéléver, L L J
Sarnela, N
Schallhart, S
Sengupta, K
Sipilä, M
Tomé, A
Tröstl, J
Väisänen, O
Wagner, A C
Ylisirniö, A
Zha, Q
Baltensperger, U
Carslaw, K S
Curtius, J
Flagan, R C
Hansel, A
Riipinen, I
Smith, J N
Virtanen, A
Winkler, P M
Donahue, N M
Kerminen, V M
Kulmala, M
Ehn, M
Worsnop, D R
author_facet Yan, C
Nie, W
Vogel, A L
Dada, L
Lehtipalo, K
Stolzenburg, D
Wagner, R
Rissanen, M P
Xiao, M
Ahonen, L
Fischer, L
Rose, C
Bianchi, F
Gordon, H
Simon, M
Heinritzi, M
Garmash, O
Roldin, P
Dias, A
Ye, P
Hofbauer, V
Amorim, A
Bauer, P S
Bergen, A
Bernhammer, A K
Breitenlechner, M
Brilke, S
Buchholz, A
Mazon, S Buenrostro
Canagaratna, M R
Chen, X
Ding, A
Dommen, J
Draper, D C
Duplissy, J
Frege, C
Heyn, C
Guida, R
Hakala, J
Heikkinen, L
Hoyle, C R
Jokinen, T
Kangasluoma, J
Kirkby, J
Kontkanen, J
Kürten, A
Lawler, M J
Mai, H
Mathot, S
Mauldin, R L
Molteni, U
Nichman, L
Nieminen, T
Nowak, J
Ojdanic, A
Onnela, A
Pajunoja, A
Petäjä, T
Piel, F
Quéléver, L L J
Sarnela, N
Schallhart, S
Sengupta, K
Sipilä, M
Tomé, A
Tröstl, J
Väisänen, O
Wagner, A C
Ylisirniö, A
Zha, Q
Baltensperger, U
Carslaw, K S
Curtius, J
Flagan, R C
Hansel, A
Riipinen, I
Smith, J N
Virtanen, A
Winkler, P M
Donahue, N M
Kerminen, V M
Kulmala, M
Ehn, M
Worsnop, D R
author_sort Yan, C
collection CERN
description Atmospheric new-particle formation (NPF) affects climate by contributing to a large fraction of the cloud condensation nuclei (CCN). Highly oxygenated organic molecules (HOMs) drive the early particle growth and therefore substantially influence the survival of newly formed particles to CCN. Nitrogen oxide (NO$_{x}$) is known to suppress the NPF driven by HOMs, but the underlying mechanism remains largely unclear. Here, we examine the response of particle growth to the changes of HOM formation caused by NO$_{x}$. We show that NO$_{x}$ suppresses particle growth in general, but the suppression is rather nonuniform and size dependent, which can be quantitatively explained by the shifted HOM volatility after adding NO$_{x}$. By illustrating how NO$_{x}$ affects the early growth of new particles, a critical step of CCN formation, our results help provide a refined assessment of the potential climatic effects caused by the diverse changes of NO$_{x}$ level in forest regions around the globe.
id oai-inspirehep.net-1834990
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-18349902021-02-02T22:11:19Zdoi:10.1126/sciadv.aay4945http://cds.cern.ch/record/2750786engYan, CNie, WVogel, A LDada, LLehtipalo, KStolzenburg, DWagner, RRissanen, M PXiao, MAhonen, LFischer, LRose, CBianchi, FGordon, HSimon, MHeinritzi, MGarmash, ORoldin, PDias, AYe, PHofbauer, VAmorim, ABauer, P SBergen, ABernhammer, A KBreitenlechner, MBrilke, SBuchholz, AMazon, S BuenrostroCanagaratna, M RChen, XDing, ADommen, JDraper, D CDuplissy, JFrege, CHeyn, CGuida, RHakala, JHeikkinen, LHoyle, C RJokinen, TKangasluoma, JKirkby, JKontkanen, JKürten, ALawler, M JMai, HMathot, SMauldin, R LMolteni, UNichman, LNieminen, TNowak, JOjdanic, AOnnela, APajunoja, APetäjä, TPiel, FQuéléver, L L JSarnela, NSchallhart, SSengupta, KSipilä, MTomé, ATröstl, JVäisänen, OWagner, A CYlisirniö, AZha, QBaltensperger, UCarslaw, K SCurtius, JFlagan, R CHansel, ARiipinen, ISmith, J NVirtanen, AWinkler, P MDonahue, N MKerminen, V MKulmala, MEhn, MWorsnop, D RSize-dependent influence of NO$_{x}$ on the growth rates of organic aerosol particlesAtmospheric new-particle formation (NPF) affects climate by contributing to a large fraction of the cloud condensation nuclei (CCN). Highly oxygenated organic molecules (HOMs) drive the early particle growth and therefore substantially influence the survival of newly formed particles to CCN. Nitrogen oxide (NO$_{x}$) is known to suppress the NPF driven by HOMs, but the underlying mechanism remains largely unclear. Here, we examine the response of particle growth to the changes of HOM formation caused by NO$_{x}$. We show that NO$_{x}$ suppresses particle growth in general, but the suppression is rather nonuniform and size dependent, which can be quantitatively explained by the shifted HOM volatility after adding NO$_{x}$. By illustrating how NO$_{x}$ affects the early growth of new particles, a critical step of CCN formation, our results help provide a refined assessment of the potential climatic effects caused by the diverse changes of NO$_{x}$ level in forest regions around the globe.oai:inspirehep.net:18349902020
spellingShingle Yan, C
Nie, W
Vogel, A L
Dada, L
Lehtipalo, K
Stolzenburg, D
Wagner, R
Rissanen, M P
Xiao, M
Ahonen, L
Fischer, L
Rose, C
Bianchi, F
Gordon, H
Simon, M
Heinritzi, M
Garmash, O
Roldin, P
Dias, A
Ye, P
Hofbauer, V
Amorim, A
Bauer, P S
Bergen, A
Bernhammer, A K
Breitenlechner, M
Brilke, S
Buchholz, A
Mazon, S Buenrostro
Canagaratna, M R
Chen, X
Ding, A
Dommen, J
Draper, D C
Duplissy, J
Frege, C
Heyn, C
Guida, R
Hakala, J
Heikkinen, L
Hoyle, C R
Jokinen, T
Kangasluoma, J
Kirkby, J
Kontkanen, J
Kürten, A
Lawler, M J
Mai, H
Mathot, S
Mauldin, R L
Molteni, U
Nichman, L
Nieminen, T
Nowak, J
Ojdanic, A
Onnela, A
Pajunoja, A
Petäjä, T
Piel, F
Quéléver, L L J
Sarnela, N
Schallhart, S
Sengupta, K
Sipilä, M
Tomé, A
Tröstl, J
Väisänen, O
Wagner, A C
Ylisirniö, A
Zha, Q
Baltensperger, U
Carslaw, K S
Curtius, J
Flagan, R C
Hansel, A
Riipinen, I
Smith, J N
Virtanen, A
Winkler, P M
Donahue, N M
Kerminen, V M
Kulmala, M
Ehn, M
Worsnop, D R
Size-dependent influence of NO$_{x}$ on the growth rates of organic aerosol particles
title Size-dependent influence of NO$_{x}$ on the growth rates of organic aerosol particles
title_full Size-dependent influence of NO$_{x}$ on the growth rates of organic aerosol particles
title_fullStr Size-dependent influence of NO$_{x}$ on the growth rates of organic aerosol particles
title_full_unstemmed Size-dependent influence of NO$_{x}$ on the growth rates of organic aerosol particles
title_short Size-dependent influence of NO$_{x}$ on the growth rates of organic aerosol particles
title_sort size-dependent influence of no$_{x}$ on the growth rates of organic aerosol particles
url https://dx.doi.org/10.1126/sciadv.aay4945
http://cds.cern.ch/record/2750786
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