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Monitoring of Atmospheric Reduced Sulfur Compounds and Their Oxidation in Gunsan Landfill Areas
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 Title & Authors
Monitoring of Atmospheric Reduced Sulfur Compounds and Their Oxidation in Gunsan Landfill Areas
Kim, Seong-Cheon;
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landfill;source;photochemical oxidation;RSCs;;;
 Cited by
Bae, G.-N., Kim, M. C., Lim, D.-Y., Moon, K.-C. and Baik, N. J. : Characteristics of urban aerosol number size distribution in Seoul during winter season of 2001. Journal of Korean Society for Atmospheric Environment, 19, 167-177, 2003

Berresheim, H., Wine, P. H. and Davis, D. D. : Sulfur in the atmosphere, in Composition, Chemistry, Climate of the Atmosphere. edited by H.B. Singh, Van Nostrand Reinhold, New York, pp. 252-307, 1995

Chung, C. S. and Yang, D. B. : On the primary productivity in the southern sea of Korea. The Korean Society of Oceanography, 26, 242-254, 1991

Kettle, A. J. et al. : A global database of sea surface dimethylsulfide (DMS) measurements and a procedure to predict sea surface DMS as a function of latitude, longitude and month. Global Biogeochemical Cycles, 13, 399-444, 1999 crossref(new window)

Kim, K.-H. : Performance characterization of the GC/PFPD for $H_2S,\;CH_3SH,$ DMS, and DMDS in air. Atmospheric Environment, 39, 2235-2242, 2005a crossref(new window)

Kim, K.-H. : Some insights into the gas chromatographic determination of reduced sulfur compounds (RSC) in air. Environ. Science and Technology, 39, 6765-6769, 2005b crossref(new window)

Korean Ministry of Environment, 2005. Annual Report of Ambient Air Quality in Korea, 2004

Lee, G., Kahng, S.-H., Oh, J.-R., Kim, K.-R. and Lee, M. : Biogenic emission of dimethylsulfide from a highly eutrophicated coastal region, Masan Bay, South Korea. Atmospheric Environment, 38, 2927-2937, 2004 crossref(new window)

Muezzinoglu, A. : A study of volatile organic sulfur emissions causing urban odors. Chemosphere, 51, 245-252, 2003 crossref(new window)

Nunes, L. S. S., Tavares, T. M., Dippel, J. and Jaeschke, W. : Measurements of atmospheric concentrations of reduced sulphur compounds in the All Saints Bay area in Bahia, Brazil. Journal of Atmospheric Chemistry, 50, 79-100, 2005 crossref(new window)

Sander, S. P., Friedl, R. R., Golden, D. M., Kurylo, M. J., Moortgat, G. K., Ravishankara, A. R., Kolb, C. E., Molina, M. J. and Finalyson-Pitts, B. J. : Chemical kinetics and photochemical data for use in stratospheric modeling. Jet Propulsion Laboratory Publication 02-25, Jet Propulsion Laboratory, Pasadena, California, 2002

Shon, Z.-H., Kim, K.-H., Bower, K., Lee, G. and Kim, J. : Assessment of the photochemistry of OH and $NO_3$ on Jeju Island during the Asian Dust-Storm Period in the Spring of 2001. Chemosphere 55, 1127-1142, 2004 crossref(new window)

Shon, Z.-H., Kim, K.-H., Jeon, E.-C., Kim, M.-Y., Kim, Y.-K. and Song, S.-K. : Photochemistry of reduced sulfur compounds in a landfill environment. Atmospheric Environment, 39, 4803-4814, 2005 crossref(new window)

Shon, Z.-H. and Kim, K.-H. : Photochemical oxidation of reduced sulfur compounds in the atmosphere of Seoul metropolitan city, chemosphere, 2006. in press

Sorensen, S., Falbe-Hansen, H., Mangoni, M., Hjorth, J. and Jensen, N. R. : Observation of DMSO and $CH_3S(O)OH$ from the gas phase reaction between DMS and OH. Journal of Atmospheric Chemistry, 24, 299-315, 1996

Wallington, T. J., Atkinson, R., Winer, A. M. and Pitts Jr., J. N. : Absolute rate constants for the gasphase reactions of the NO3 radical with $CH_3SH,\;CH_3SCH_3,\;CH_3SSCH_3,\;H_2S,\;SO_2,\;and\;CH_3OCH_3$ over the temperature range 280-350K. Journal of Physical Chemistry 90, 5393-5396, 1986 crossref(new window)