Assesment of Indoor Air Quality within Public Transport Vehicles operating in specified locations throughout Seoul

서울 일부 지역 교통수단의 실내 공기질 평가

  • Sohn Jong-Ryeul (Dept. of Environmental Health, College of Health Science, Korea University) ;
  • Choi Dal-Woong (Dept. of Environmental Health, College of Health Science, Korea University) ;
  • Choi Jung-Sook (Dept. of Environmental Health, College of Health Science, Korea University) ;
  • Woo Wan-Gi (Dept. of Environmental Health, Jang An College)
  • 손종렬 (고려대학교 보건과학대학 환경보건학과) ;
  • 최달웅 (고려대학교 보건과학대학 환경보건학과) ;
  • 최정숙 (고려대학교 보건과학대학 환경보건학과) ;
  • 우완기 (장안대학 환경보건학과)
  • Published : 2006.03.01

Abstract

This paper was conducted concerning the degree of indoor air quality in public transport vehicles such as taxicabs, buses and subway trains, as sampled through the active participation of drivers and passengers in Seoul between 13th August 2005 and 2nd November 2005. The results were summarized as follows: 1. Among the measured substances especially respirable particulate matters ($PM_{10}$), total bacteria counts (TBC) and carbon dioxide ($CO_2$) exceeded the standard level of $150{\mu}g/m^3,\;800CFU/m^3$ and 1000ppm. 2. The concentration of carbon dioxide ($CO_2$) in taxi recorded 2491ppm, which is more than the standard amount of 1000ppm. This level was comparatively higher than all other public transportation methods. Total bacteria counts (TBC) in bus and subway recorded $1082CFU/m^3\;and\;1856CFU/m^3$, respectively. 3. The drivers who regularly work long hours showed the higher concern about contamination of the air inside the public transport vehicles and they considered it to be worse than the air outside. In contrast, the general public showed less concern about the air quality inside the public transport vehicles. However, they too acknowledged that the quality of the air inside the public transport vehicles was poor. In regards to the degree of indoor air quality in the public transport vehicles, a counterplan must be implemented urgently to effectively combat the excessive levels of $PM_{10}$, microorganism and $CO_2$. We need to gather more conclusive evidence pertaining to other possible contaminants and influencing factors.

Keywords

References

  1. 보건복지부(1990), 공중이용시설 위생관리기준 및 공정시험법
  2. 환경부, (2004), 실내공기질공정시험법
  3. 임종한, 노재훈, 이경종, 윤명조, 문영한 (1994) 택시 운전기사의 호흡기증상과 폐기능 장해, 대한산업의학회지, 6(1), 137-142
  4. 김윤신, 진후만, 홍승철 (1991) 서울시 일부 택시기사의 이산화질소 개인 폭로량에 관한 연구, 한국 환경위생학회지, 17(2), 9-16
  5. 김임순, 이경종, 노재훈, 문영한 (1989) 서울지역에 있어서 직업운전자의 건강상태가 교통사고에 미치는 영향, 예방의학회지, 22(3):312-22
  6. 김윤신, 윤성원, 허진, 전준민 (1996) 빌딩 사물실의 실내공기질 평가에 관한 조사연구, 환경과산업의학, 5(1), 59-73
  7. 김요섭 (1992) 교통경찰관의 대기오염 노출에 따른 건강영향에 관한 연구, 연세 대학교 보건대학원
  8. 백승화, 김종현, 정헌준 (2001) 대전지역 지하상가의 실내공기질 평가와 이용자들의 인식도 연구, 한국 환경관리학회, 7(1). 87-105
  9. 백성옥, 홍성희, 김미현, 김동길, 송희봉, 한개희, 도화석, 임종희 (2001) 대구지하철 열차내의 공기질과 이용시민의 채감오염도 평가, 대한 환경공학회, 23(2), 337-378
  10. 이혜숙 (1982) 중학교 학생에서의 대기 오염에 의한 호흡기 증상 호소율, 연세대학교 보건대학원
  11. 서울시정개발연구원 (2003) 지하공기오염 저감방안에 관한 연구, 서울특별시 지하철공사
  12. Bouhuys A, Hartogenesis F. Korfage HJH. Byssionosis Prevalence and flex processing, Br J Ind Med, 1963;21;13-9
  13. Burns PB, Swanson GM, the Occupational Cancer incidence surveilance study (OCISS):Risk of lung cancer by usual occupation and industry in the Detroit metropolitan area. Am J Ind Med 1991;19(5);655-71 https://doi.org/10.1002/ajim.4700190510
  14. Hendangy W. Seemayer NH. Genotoxicity of particulate emission from gasoline powered engines evaluated by short-term bioassays, Exp Pathol 1989;37(1-4):43-50 https://doi.org/10.1016/S0232-1513(89)80010-6
  15. Krzynowski M, Kauffmann F. The relation of respiratory symptoms and ventilatory function to moderate occupational exposure in a general population, Int J Epiderniol 1998;17(2);397-406
  16. Scheepers PT. Bas RP, Combustion of diesel fuel from a toxicological prospective, Int arch Occup Environ Health 1992;64(3);163-77 https://doi.org/10.1007/BF00380905
  17. Wynder EL. Hoffmann D. Tobacco and health. NEngl J Med 1979;300;894-903 https://doi.org/10.1056/NEJM197904193001605