Scenario Analysis of Personal Nitrogen Dioxide Exposure with Monte Carlo Simulation on Subway Station Workers in Seoul

확률론적 모의실험 기법을 이용한 일부 지하철 근무자들의 이산화질소 개인노출 시나리오 분석

  • 손부순 (순천향대학교 환경보건학과) ;
  • 장봉기 (순천향대학교 환경보건학과) ;
  • 양원호 (서울대학교 보건대학원 환경보건학과)
  • Published : 2001.06.01

Abstract

The personal exposures of nitrogen dioxide(NO$_2$), microenvironmental levels and daily time activity patterns on Seoul subway station workers were measured from February 10 to March 12, 1999. Personal NO$_2$exposure for 24 hours were 29.40$\pm$9.75 ppb. NO$_2$level of occupational environment were 27.87$\pm$7.15 ppb in office, 33.60$\pm$8.64 ppb in platform and 50.13$\pm$13.04 ppb in outdoor. Personal exposure time of subway station workers was constituted as survey results with $7.94\pm$3.00 hours in office, $2.82\pm$1.63 hours in platform and 1 hours in outdoor. With above results, personal $NO_2$exposure distributions on subway station workers in Seoul were estimated with Monte Carlo simulation which uses statistical probabilistic theory on various exposure scenario testing. Some of distributions which did not have any formal patterns were assumed as custom distribution type. Estimated personal occupational $NO_2$exposure using time weighted average (TWA) model was 31.$29\pm$5.57 ppb, which were under Annual Ambient Standard (50ppb) of Korea. Though arithmetic means of measured personal $NO_2$exposure was lower than that of occupational $NO_2$exposure estimated by TWA model, considering probability distribution type simulated, probability distribution of measured personal $NO_2$exposures for 24 hours was over ambient standard with 3.23%, which was higher than those of occupational exposure(0.02%). Further research is needed for reducing these 24 hour $NO_2$personal excess exposures besides occupational exposure on subway station workers in Seoul.

Keywords

References

  1. Environ. Sci. Technol. v.18 Evidence for improved ambient air quality and the need for personal exposure research Splengler,J.D.;M.L.Soczek
  2. Environ. Health Perspect. v.107 no.2 Air pollution and daily mortality in Seoul and Ulsan Korea Lee,J.T.;D.Shin;Y.Chung
  3. J. Epidemiol. Community Health v.51 Air pollution and other local factors in respiratory disease Fairbairn,A.S.;D.D.Reid
  4. 서울대학교 대학원 석사학위논문 환경오염이 건강에 미치는 영향에 관한 국내 연구의 고찰 이승준
  5. Risk Analysis v.15 no.6 Updating uncertainty in and integrated risk assessment:conceptual framework and methods Brand,K.P.;M.J.Small
  6. Probabilistic health risk assessment, air toxic risk assessment and management Gratt,L.B.
  7. 여천공단지역의 환경오염으로 인한 건강위해성평가 정용;신동천;최용욱
  8. Regul. Toxicol. Pharmacol. v.18 Comparing the results of a monte carlo analysis with EPA's reasonable maximum exposed individual(RMEI): A case study of a former wood treatment site Copeland,T.L.;D.J.Paustenbach;M.A.Harris;J.Otani
  9. Characterization of uncertainty, risk assessment and indoor air quality Su,S.H.;R.M.Little;N.J.Gudka
  10. 환경위해성평가 및 관리기술 제2단계 1차년도 보고서 대기오염물질의 위해성평가 및 관리기술 환경부
  11. Environ. Sci. Technol. v.71 no.3 Nitrogen dioxide inside and outside 137 homes and implications for ambient air quality standards and health effects research Spengler,J.D.;C.P.Duffy;R.Letz;T.W.Tibbltts;B.G.Ferris
  12. Personal exposure to indoor air pollution: Indoor air pollution-A health perspective Ryan,P.B.;W.E.Lambert
  13. Am. J. Public Health v.88 no.12 Determinants of nitrogen dioxide concentrations in indoor ice skating rinks Levy,J.I.;K.Lee;Y.Yanagisawa;P.Hutchinson;J.D.Spengler
  14. 한국환경위생학회지 v.26 no.1 Monte-Carlo 시뮬레이션을 이용한 실내 이산화질소 노출의 분류 오류에 관한 연구 양원호;배현주;김현용;정문식;정문호
  15. 한국대기환경학회지 v.16 no.6 실내 및 실외 공기중 이산화질소의 개인 노출량 측정을 위한 수동식 시료 채취기의 성능평가 양원호;이기영;백도명
  16. Risk Analysis v.14 no.4 Use of Monte Carlo simulation for human exposure assessment at a Superfund site Smith,R.L.
  17. Journal of Air & Waste Management Association v.50 Impact of microenvironmental nitrogen dioxide concentrations on personal exposure in Australia Lee,K;W.Yang;N.Bofinger