Measurements of size-resolved hygroscopicity in the California coastal zone

Aircraft-based measurements of aerosol hygroscopicity, both in the form of size-resolved, diameter growth factors and in the dependence of particle light scattering on relative humidity, are presented for the marine boundary layer of the southern California coastal zone. The chemical composition of...

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Main Authors: D. A. Hegg, D. S. Covert, H. H. Jonsson
Format: Article
Language:English
Published: Copernicus Publications 2008-12-01
Series:Atmospheric Chemistry and Physics
Online Access:http://www.atmos-chem-phys.net/8/7193/2008/acp-8-7193-2008.pdf
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spelling doaj-8e979ef7dbfe4fb889a24ff2ea8892ef2020-11-25T01:08:25ZengCopernicus PublicationsAtmospheric Chemistry and Physics1680-73161680-73242008-12-0182371937203Measurements of size-resolved hygroscopicity in the California coastal zoneD. A. HeggD. S. CovertH. H. JonssonAircraft-based measurements of aerosol hygroscopicity, both in the form of size-resolved, diameter growth factors and in the dependence of particle light scattering on relative humidity, are presented for the marine boundary layer of the southern California coastal zone. The chemical composition of the aerosol is collated with the hygroscopicity data, both to examine the mechanism for the increase in aerosol hygroscopicity with altitude and as input for receptor type modeling. The data suggest an increase in aerosol hygroscopicity with altitude, possibly associated with oxidation of organic films. The receptor modeling suggests three distinct aerosol types/sources for this venue: marine, biomass burning and pollution. Model output is used in regression analyses to derive a prognostic mixing rule for the hygroscopicity of aerosol with these three sources. The mixing rule demonstrated substantial prognostic power for submicron hygroscopicity but essentially none for supermicron. http://www.atmos-chem-phys.net/8/7193/2008/acp-8-7193-2008.pdf
collection DOAJ
language English
format Article
sources DOAJ
author D. A. Hegg
D. S. Covert
H. H. Jonsson
spellingShingle D. A. Hegg
D. S. Covert
H. H. Jonsson
Measurements of size-resolved hygroscopicity in the California coastal zone
Atmospheric Chemistry and Physics
author_facet D. A. Hegg
D. S. Covert
H. H. Jonsson
author_sort D. A. Hegg
title Measurements of size-resolved hygroscopicity in the California coastal zone
title_short Measurements of size-resolved hygroscopicity in the California coastal zone
title_full Measurements of size-resolved hygroscopicity in the California coastal zone
title_fullStr Measurements of size-resolved hygroscopicity in the California coastal zone
title_full_unstemmed Measurements of size-resolved hygroscopicity in the California coastal zone
title_sort measurements of size-resolved hygroscopicity in the california coastal zone
publisher Copernicus Publications
series Atmospheric Chemistry and Physics
issn 1680-7316
1680-7324
publishDate 2008-12-01
description Aircraft-based measurements of aerosol hygroscopicity, both in the form of size-resolved, diameter growth factors and in the dependence of particle light scattering on relative humidity, are presented for the marine boundary layer of the southern California coastal zone. The chemical composition of the aerosol is collated with the hygroscopicity data, both to examine the mechanism for the increase in aerosol hygroscopicity with altitude and as input for receptor type modeling. The data suggest an increase in aerosol hygroscopicity with altitude, possibly associated with oxidation of organic films. The receptor modeling suggests three distinct aerosol types/sources for this venue: marine, biomass burning and pollution. Model output is used in regression analyses to derive a prognostic mixing rule for the hygroscopicity of aerosol with these three sources. The mixing rule demonstrated substantial prognostic power for submicron hygroscopicity but essentially none for supermicron.
url http://www.atmos-chem-phys.net/8/7193/2008/acp-8-7193-2008.pdf
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