Characterization of a Smog Chamber for Studying Formation and Physicochemical Properties of Secondary Organic Aerosol
Author(s) -
Zaeem Bin Babar,
JunHyun Park,
Jia Kang,
HoJin Lim
Publication year - 2016
Publication title -
aerosol and air quality research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.866
H-Index - 55
eISSN - 2071-1409
pISSN - 1680-8584
DOI - 10.4209/aaqr.2015.10.0580
Subject(s) - aerosol , relative humidity , environmental chamber , ozonolysis , particle (ecology) , chemistry , humidity , analytical chemistry (journal) , reaction rate constant , photodissociation , environmental chemistry , meteorology , kinetics , photochemistry , organic chemistry , quantum mechanics , geology , physics , oceanography
An indoor smog chamber facility has been built for carrying out secondary organic aerosol (SOA) formation and for studying physicochemical properties of SOA. This facility comprises of ~7 m3 FEP Teflon reactor placed in temperature controlled room coupled with instruments for gas and particle phase data. Detailed characterization experiments have been presented describing control of reactor temperature, relative humidity (RH), effective mixing time, wall loss rates of gases and particles, light source, and air purification. This chamber showed a wide range of temperature control with acceptable precision (i.e., 18–33 ± 0.5°C). The gas wall loss rates for NO, NO2, and O3 were found to be 3.78 × 10–4 min–1, 4.48 × 10–5 min–1, and 6.47 × 10–5 min–1, respectively. NO2 photolysis rate constant was 0.17 min–1. Particle wall loss constant was found to be 3.96 × 10–3 min–1 at Dp = 100 nm. SOA yields of dark α-pinene ozonolysis ranged from 0.025 to 0.378 for α-pinene concentrations from 10 ppb to 100 ppb.
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