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Investigation of an odor source in Changwon City using multi-monitoring methods. A case study of Korea

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
It is a regular occurrence for residents living near industrial plants to complain regarding odor problems. Those plants may also try to protect themselves from liability by demonstrating some environmental evidence. An investigation to prove whether the accused industrial complex is the major source of released odors among several potential sources of odor problems was carried out using the combination of measurement techniques. The multi-monitoring methods comprise utilizations of olfactory system, questionnaire, electronic detector and chemical analysis. This study demonstrated the achievement of integrating scientific monitoring methods to support the enforcement of odor acts for management in the industrial city.
Rocznik
Strony
109--130
Opis fizyczny
Bibliogr. 25 poz., tab., rys.
Twórcy
  • Andaman Environment and Natural Disaster Research Center, Interdisciplinary Graduate School of Earth System Science and Andaman Natural Disaster Management, Prince of Songkla University, Phuket Campus, Thailand
autor
  • Department of Environmental Engineering, Changwon National University, Changwon City, the Republic of Korea
  • Department of Eco-Friendly Offshore Plant FEED Engineering, Changwon National University, Changwon City, the Republic of Korea
Bibliografia
  • [1] Changwon City Hall (CCH) (2013), Changwon Environmental Capital, Korea. Retrieved December 1, 2013, .
  • [2] Korea Industrial Complex Corp, Changwon Industrial Complex, Korea. Retrieved November 29, 2013, <http://www.e-cluster.net/new_app/indust/condition/danji_info_down.jsp> (in Korean).
  • [3] BOKOWA A.H., Review of odour legislation, Chem. Eng. Trans., 2010, 23, 31.
  • [4] CAPELLI L., SIRONI S., DEL ROSSO R., GUILLOT J.M., Measuring odours in the environment vs. dispersion modelling. A review, Atmos. Environ., 2013, 79, 731.
  • [5] LEE H.D., JEON S.B., CHOI W.J., LEE S.S., LEE M.H., OH M.J., A novel assessment of odor sources using instrumental analysis combined with resident monitoring records for an industrial area in Korea, Atmos. Environ., 2013, 74, 277.
  • [6] The National Institute of Environmental Research (2007), Korean odorant Analysis Standards, Ministry of Environment, Korea. Retrieved November 25, 2013, <http://www.me.go.kr/common/fileDownload. do?code=/disk4/home/BUB/30/8/GOSI/1/@B_GOSI@CD,SEQ,NO@FILE1@20971520@N@ HWP,hwp,doc,DOC&value=30,8,1&searchOption2=title&decorator=me&searchWord=%BE%C7% C3%EB>(in Korean).
  • [7] The World Bank (2013), Data: Population density (people per sq. km of land area). Retrieved November 20, 2013, <http://data.worldbank.org/indicator/EN.POP.DNST?order=wbapi_data_value 2010 +wbapidatavalue+wbapidatavalue-last&sort=asc>.
  • [8] KABIR E., KIM K.H., An on-line analysis of 7 odorous volatile organic compounds in the ambient air surrounding a large industrial complex, Atmos. Environ., 2010, 44, 3492.
  • [9] KIM K.H., JEON E.C., CHOI Y.J., KOO Y.S., The emission characteristics and the related malodour intensities of gaseous reduced sulfur compounds (RSC) in a large industrial complex, Atmos. Environ., 2006, 40, 4478.
  • [10] NICELL J.A., Assessment and regulation of odour impacts, Atmos. Environ., 2009, 43, 196.
  • [11] ATARI D.O., LUGINAAH I.N., GOREY K., XU X., FUNG K., Associations between self-reported odour annoyance and volatile organic compounds in Chemical Valley, Sarnia, Ontario, Environ. Monit. Assess., 2013, 185, 4537.
  • [12] NICOLAS J., CORS M., ROMAIN A.C., DELVA J., Identification of odour sources in an industrial park from resident diaries statistics, Atmos. Environ., 2010, 44, 1623.
  • [13] GOSTELOW P., PARSONS S.A., STUETZ R.M., Odour measurements for sewage treatment works, Water Res., 2001, 35, 579.
  • [14] PAN L., YANG S.X., A new intelligent electronic nose system for measuring and analyzing livestock and poultry farm odours, Environ. Monit. Assess., 2007, 135, 399.
  • [15] PANIGRAHI S., BALASUBRAMANIAN S., GU H., LOGUE C.M., MARCHELLO M., Design and development of a metal oxide based electronic nose for spoilage classification of beef, Sensor. Actuat. B: Chem., 2006, 119, 2.
  • [16] Korean Ministry of Environment (2008), Annual Report of Ambient Air Qaulity in Korea.
  • [17] SUSAYA J., KIM K.H., CHANG Y.S., Characterization of major offensive odorants released from lake sediment, Atmos. Environ., 2011, 45, 1236.
  • [18] FAN H., SAILOR D.J., Modeling the impacts of anthropogenic heating on the urban climate of Philadelphia: a comparison of implementations in two PBL schemes, Atmos. Environ., 2005, 39, 73.
  • [19] LIN J.T., YOUN D., LIANG X.Z., WUEBBLES D.J., Global model simulation of summertime U.S. ozone diurnal cycle and its sensitivity to PBL mixing, spatial resolution, and emissions, Atmos. Environ., 2008, 42, 8470.
  • [20] QUAN J., GAO Y., ZHANG Q., TIE X., CAO J., HAN S., MENG J., CHEN P., ZHAO D., Evolution of planetary boundary layer under different weather conditions, and its impact on aerosol concentrations, Particuology, 2013, 11, 34.
  • [21] Korea Meteorological Administration (2009), Climate: Climate of Korea, Korea. Retrieved November 25, 2013, <http://web.kma.go.kr/eng/biz/climate_01.jsp>.
  • [22] OH I.B., KIM Y.K., LEE H.W., KIM C.H., An observational and numerical study of the effects of the late sea breeze on ozone distributions in the Busan metropolitan area, Korea, Atmos. Environ., 2006, 40, 1284.
  • [23] SEO S.G., MA Z.K., JEON J.M., JUNG S.C., LEE W.B., Measurements of key offensive odorants in a fishery industrial complex in Korea, Atmos. Environ., 2011, 45, 2929.
  • [24] KIM K.H., PARK S.Y., A comparative analysis of malodor samples between direct (olfactometry) and indirect (instrumental) methods, Atmos. Environ., 2008, 40, 5061.
  • [25] SUSAYA J., KIM K.H., PHAN N.T., KIM J.C., Assessment of reduced sulphur compounds in ambient air as malodor components in an urban area, Atmos. Environ., 2011, 45, 3381
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-321470fd-a1fa-4b2c-806c-716ffe2f821f
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