The effect of organic compounds on the growth rate of cloud droplets in marine and forest settings

Organic matter represents an important fraction of the fine particle aerosol, yet our knowledge of the roles of organics in the activation of aerosol particles into cloud droplets is poor. A cloud condensation nucleus (CCN) counter is used to examine the relative growth rates of cloud droplets for c...

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Main Authors: N. C. Shantz, W. R. Leaitch, L. Phinney, M. Mozurkewich, D. Toom-Sauntry
Format: Article
Language:English
Published: Copernicus Publications 2008-10-01
Series:Atmospheric Chemistry and Physics
Online Access:http://www.atmos-chem-phys.net/8/5869/2008/acp-8-5869-2008.pdf
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spelling doaj-7ec5c65ce5cd451f9e3dddde0578740c2020-11-24T23:54:46ZengCopernicus PublicationsAtmospheric Chemistry and Physics1680-73161680-73242008-10-0181958695887The effect of organic compounds on the growth rate of cloud droplets in marine and forest settingsN. C. ShantzW. R. LeaitchL. PhinneyM. MozurkewichD. Toom-SauntryOrganic matter represents an important fraction of the fine particle aerosol, yet our knowledge of the roles of organics in the activation of aerosol particles into cloud droplets is poor. A cloud condensation nucleus (CCN) counter is used to examine the relative growth rates of cloud droplets for case studies from field measurements on the North Pacific Ocean and in a coniferous forest. A model of the condensational growth of water droplets, on particles dissolving according to their solubility in water, is used to simulate the initial scattering of the droplets as they grow in the CCN counter. Simulations of the growth rates of fine particles sampled in the marine boundary layer of the North Pacific Ocean shows no evidence of natural marine organic material contributing to the CCN water uptake but there is an indication of an influence from organics from diesel ship emissions on the size distribution of sulphate and the ability of these particles to act as CCN. Simulations of the observations of water uptake on biogenic organic aerosol particles sampled in a coniferous forest indicate an impact of the organic on the water uptake rates, but one that is still smaller than that of pure sulphate. The existence of organics becomes important in determining the water uptake as the organic mass increases relative to sulphate. The values of the organic component of the hygroscopicity parameter κ that describes the CCN activity were found to be negligible for the marine particles and 0.02–0.05 for the forest particles. http://www.atmos-chem-phys.net/8/5869/2008/acp-8-5869-2008.pdf
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language English
format Article
sources DOAJ
author N. C. Shantz
W. R. Leaitch
L. Phinney
M. Mozurkewich
D. Toom-Sauntry
spellingShingle N. C. Shantz
W. R. Leaitch
L. Phinney
M. Mozurkewich
D. Toom-Sauntry
The effect of organic compounds on the growth rate of cloud droplets in marine and forest settings
Atmospheric Chemistry and Physics
author_facet N. C. Shantz
W. R. Leaitch
L. Phinney
M. Mozurkewich
D. Toom-Sauntry
author_sort N. C. Shantz
title The effect of organic compounds on the growth rate of cloud droplets in marine and forest settings
title_short The effect of organic compounds on the growth rate of cloud droplets in marine and forest settings
title_full The effect of organic compounds on the growth rate of cloud droplets in marine and forest settings
title_fullStr The effect of organic compounds on the growth rate of cloud droplets in marine and forest settings
title_full_unstemmed The effect of organic compounds on the growth rate of cloud droplets in marine and forest settings
title_sort effect of organic compounds on the growth rate of cloud droplets in marine and forest settings
publisher Copernicus Publications
series Atmospheric Chemistry and Physics
issn 1680-7316
1680-7324
publishDate 2008-10-01
description Organic matter represents an important fraction of the fine particle aerosol, yet our knowledge of the roles of organics in the activation of aerosol particles into cloud droplets is poor. A cloud condensation nucleus (CCN) counter is used to examine the relative growth rates of cloud droplets for case studies from field measurements on the North Pacific Ocean and in a coniferous forest. A model of the condensational growth of water droplets, on particles dissolving according to their solubility in water, is used to simulate the initial scattering of the droplets as they grow in the CCN counter. Simulations of the growth rates of fine particles sampled in the marine boundary layer of the North Pacific Ocean shows no evidence of natural marine organic material contributing to the CCN water uptake but there is an indication of an influence from organics from diesel ship emissions on the size distribution of sulphate and the ability of these particles to act as CCN. Simulations of the observations of water uptake on biogenic organic aerosol particles sampled in a coniferous forest indicate an impact of the organic on the water uptake rates, but one that is still smaller than that of pure sulphate. The existence of organics becomes important in determining the water uptake as the organic mass increases relative to sulphate. The values of the organic component of the hygroscopicity parameter κ that describes the CCN activity were found to be negligible for the marine particles and 0.02–0.05 for the forest particles.
url http://www.atmos-chem-phys.net/8/5869/2008/acp-8-5869-2008.pdf
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