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Review of Smog Chamber Experiments for Secondary Organic Aerosol Formationoa mark
  • Kim, Hyun ;
  • Kang, Dahyun ;
  • Jung, Heon Young ;
  • Jeon, Jongho ;
  • Lee, Jae Young
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Publication Year
2024-01-01
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Citation
Atmosphere, Vol.15
Keyword
emissionmeasurement systemsecondary organic aerosolsmog chamberwall loss
Mesh Keyword
Chamber experimentsChamber systemEmissionMeasurement systemOrganic aerosolOrganic aerosol formationSecondary organic aerosolSmog chambersSources of uncertaintyWall loss
All Science Classification Codes (ASJC)
Environmental Science (miscellaneous)
Abstract
In this study, we reviewed smog chamber systems and methodologies used in secondary organic aerosol (SOA) formation studies. Many important chambers across the world have been reviewed, including 18 American, 24 European, and 8 Asian chambers. The characteristics of the chambers (location, reactor size, wall materials, and light sources), measurement systems (popular equipment and working principles), and methodologies (SOA yield calculation and wall-loss correction) are summarized. This review discussed key experimental parameters such as surface-to-volume ratio (S/V), temperature, relative humidity, light intensity, and wall effect that influence the results of the experiment, and how the methodologies have evolved for more accurate simulation of atmospheric processes. In addition, this review identifies the sources of uncertainties in finding SOA yields that are originated from experimental systems and methodologies used in previous studies. The intensity of the installed artificial lights (photolysis rate of NO2 varied from 0.1/min to 0.40/min), SOA density assumption (varied from 1 g/cm3 to 1.45 g/cm3), wall-loss management, and background contaminants were identified as important sources of uncertainty. The methodologies developed in previous studies to minimize those uncertainties are also discussed.
ISSN
2073-4433
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/33922
DOI
https://doi.org/10.3390/atmos15010115
Fulltext

Type
Review
Funding
This study was supported by the National Research Foundation of Korea (grant number NRF-2021R1C1C1013350) and by the FRIEND (Fine Particle Research Initiative in East Asia Considering National Differences) Project through the National Research Foundation of Korea (NRF) funded by the Ministry of Science and ICT (grant number NRF-2023M3G1A1090660).
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Lee, Jae Young  Image
Lee, Jae Young 이재영
Department of Environmental and Safety Engineering
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