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Tytuł pozycji:

Impact of NOx and OH on secondary organic aerosol formation from β-pinene photooxidation

Tytuł:
Impact of NOx and OH on secondary organic aerosol formation from β-pinene photooxidation
Autorzy:
M. Sarrafzadeh
J. Wildt
I. Pullinen
M. Springer
E. Kleist
R. Tillmann
S. H. Schmitt
C. Wu
T. F. Mentel
D. Zhao
D. R. Hastie
A. Kiendler-Scharr
Temat:
Physics
QC1-999
Chemistry
QD1-999
Źródło:
Atmospheric Chemistry and Physics, Vol 16, Pp 11237-11248 (2016)
Wydawca:
Copernicus Publications, 2016.
Rok publikacji:
2016
Kolekcja:
LCC:Physics
LCC:Chemistry
Typ dokumentu:
article
Opis pliku:
electronic resource
Język:
English
ISSN:
1680-7316
1680-7324
Relacje:
https://www.atmos-chem-phys.net/16/11237/2016/acp-16-11237-2016.pdf; https://doaj.org/toc/1680-7316; https://doaj.org/toc/1680-7324
DOI:
10.5194/acp-16-11237-2016
Dostęp URL:
https://doaj.org/article/891d346acef84cc187cbf3dba109ad3b  Link otwiera się w nowym oknie
Numer akcesji:
edsdoj.891d346acef84cc187cbf3dba109ad3b
Czasopismo naukowe
In this study, the NOx dependence of secondary organic aerosol (SOA) formation from photooxidation of the biogenic volatile organic compound (BVOC) β-pinene was comprehensively investigated in the Jülich Plant Atmosphere Chamber. Consistent with the results of previous NOx studies we found increases of SOA yields with increasing [NOx] at low-NOx conditions ([NOx]0 0 ∕ [NOx]0 > 10 ppbC ppb−1). Furthermore, increasing [NOx] at high-NOx conditions ([NOx]0 > 30 ppb, [BVOC]0 ∕ [NOx]0 ∼ 10 to ∼ 2.6 ppbC ppb−1) suppressed the SOA yield. The increase of SOA yield at low-NOx conditions was attributed to an increase of OH concentration, most probably by OH recycling in NO + HO2 → NO2 + OH reaction. Separate measurements without NOx addition but with different OH primary production rates confirmed the OH dependence of SOA yields. After removing the effect of OH concentration on SOA mass growth by keeping the OH concentration constant, SOA yields only decreased with increasing [NOx]. Measuring the NOx dependence of SOA yields at lower [NO] ∕ [NO2] ratio showed less pronounced increase in both OH concentration and SOA yield. This result was consistent with our assumption of OH recycling by NO and to SOA yields being dependent on OH concentrations. Our results furthermore indicated that NOx dependencies vary for different NOx compositions. A substantial fraction of the NOx-induced decrease of SOA yields at high-NOx conditions was caused by NOx-induced suppression of new particle formation (NPF), which subsequently limits the particle surface where low volatiles condense. This was shown by probing the NOx dependence of SOA formation in the presence of seed particles. After eliminating the effect of NOx-induced suppression of NPF and NOx-induced changes of OH concentrations, the remaining effect of NOx on the SOA yield from β-pinene photooxidation was moderate. Compared to β-pinene, the SOA formation from α-pinene photooxidation was only suppressed by increasing NOx. However, basic mechanisms of the NOx impacts were the same as that of β-pinene.

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