Observations of New Particle Formation, Subsequent Growth and Shrinkage during Summertime in Beijing

Size-resolved aerosol number concentrations (10 nm–10 µm in diameter) were measured at an urban site in Beijing during summertime of 2008. Case studies of new particle formation (NPF) are presented in this work. The measured mean particle formation rate was 2.37 cm –3 s –1 , which varied from 1.5 to...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Aerosol and Air Quality Research 2016-07, Vol.16 (7), p.1591-1602
Hauptverfasser: Zhang, Jiaoshi, Chen, Zhenyi, Lu, Yihuai, Gui, Huaqiao, Liu, Jianguo, Wang, Jie, Yu, Tongzhu, Cheng, Yin
Format: Artikel
Sprache:eng
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:Size-resolved aerosol number concentrations (10 nm–10 µm in diameter) were measured at an urban site in Beijing during summertime of 2008. Case studies of new particle formation (NPF) are presented in this work. The measured mean particle formation rate was 2.37 cm –3 s –1 , which varied from 1.5 to 3.8 cm –3 s –1 , with growth rates ranging from 3.2 to 10.6 nm h –1 . NPF was observed under low number concentration of preexisting particles as well as under relatively high number concentration of preexisting particles. It was found that condensation contributed mainly and preferentially to particles growth, however, coagulation would contribute a lot when formation rate of new particles was sufficiently high. The variation of concentration of nucleation mode particles was found to be coincident with sulfur dioxide, indicating that NPF could occur under relatively high number concentration of preexisting particles if sufficient concentration of gas-phase H 2 SO 4 existed in the atmosphere. Grown particles were also observed to shrink from 61.1 nm to 15.4 nm at a shrinkage rate of 16.6 nm h –1 , accompanied by a reduction of the particle number concentration. The shrinkage rate was higher than those reported in recent studies, probably due to particle shrinkage occurred during summertime in Beijing with higher temperature and lower RH compared to those observed in other regions, thus enhanced particle shrinkage.
ISSN:1680-8584
2071-1409
DOI:10.4209/aaqr.2015.07.0480