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Combined Use of Optical and Electron Microscopic Techniques for the Measurement of Hygroscopic Property, Chemical Composition, and Morphology of Individual Aerosol Particles

Authors
Ahn, Kang-HoKim, Sun-ManJung, Hae-JinLee, Mi-JungEom, Hyo-JinMaskey, ShilaRo, Chul-Un
Issue Date
Oct-2010
Publisher
American Chemical Society
Keywords
SEA-SALT AEROSOLS; HETEROGENEOUS CHEMISTRY; ELECTRODYNAMIC BALANCE; WATER ACTIVITIES; ATMOSPHERIC PARTICLES; AMMONIUM-SULFATE; MINERAL DUST; DUST PARTICLES; X-RAY-MICROANALYSIS; LOW-TEMPERATURES
Citation
Analytical Chemistry, v.82, no.19, pp.7999 - 8009
Indexed
SCIE
SCOPUS
Journal Title
Analytical Chemistry
Volume
82
Number
19
Start Page
7999
End Page
8009
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/39466
DOI
10.1021/ac101432y
ISSN
0003-2700
Abstract
In this work, an analytical method for the characterization of the hygroscopic property, chemical composition, and morphology of individual aerosol particles is introduced. The method, which is based on the combined use of optical and electron microscopic techniques, is simple and easy to apply. An optical microscopic technique was used to perform the visual observation of the phase transformation and hygroscopic growth of aerosol particles on a single particle level. A quantitative energy-dispersive electron probe X-ray microanalysis, named low-Z particle EPMA, was used to perform a quantitative chemical speciation of the same individual particles after the measurement of the hygroscopic property. To validate the analytical methodology, the hygroscopic properties of artificially generated NaCl, KCl, (NH4)(2)SO4, and Na2SO4 aerosol particles of micrometer size were investigated. The practical applicability of the analytical method for studying the hygroscopic property, chemical composition, and morphology of ambient aerosol particles is demonstrated.
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