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Atmospheric Concentrations and Temperature- Dependent Air-Surface Exchange of Organochlorine Pesticides in Seoul  

최민규 (건국대학교 환경공학과)
여현구 (건국대학교 환경공학과)
천만영 (한경대학교 환경공학과)
선우영 (건국대학교 환경공학과)
Publication Information
Journal of Korean Society for Atmospheric Environment / v.18, no.4, 2002 , pp. 275-284 More about this Journal
Abstract
Atmospheric concentrations of organochlorine pesticides (OCPs) in Seoul, South Korea between July 1999 and May 2000 were determined to investigate concentration distribution in air, relationship between concentrations and meteorological conditions, and apportionment of sources e.g. local sources (air- surface exchange) and long range transport. Endosulfan and $\alpha$-HCH were the highest concentrations in atmosphere with values typcally ranging from 10s to l00s of pg/㎥. These high concentrations may be attributed to their usage, period and chemical property (Koa). All OCPs also showed elevated levels during the summer and were positively correlated with temperature. This would suggest that a seasonal enhancement was due to (re)volatilization from secondary sources and application during the warmer months. The temperature dependence of atmospheric concentrations of OCPs were investigated using plots of the natural logarithm of partial pressure (In P) vs reciprocal mean temperatures (1/T), and environmental phase-transition energies were calculated for each of the pesticides. For OCPs, temperature dependence was statistically significant (at the 99.99% confidence level) and temperature accounted for 35~95% of the variability in concentrations. The relatively higher slopes and phase-transition energies for $\alpha$-, ${\gamma}$-chlordane, endosulfan and endosulfan sulfate suggested that volatilization from local sources influenced their concentrations. The relatively lower those for $\alpha$-, ${\gamma}$-HCH, p, p'-DDE and heptachlor epoxide also suggested that volatilization from local sources and long range transport influenced their concentrations.
Keywords
atmosphere; organochlorine pesticides (OCPs); volatilization; temperature dependence;
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Times Cited By KSCI : 1  (Citation Analysis)
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