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폴리우레탄 패드 공정에서의 원료물질 대체에 따른 근로자 노출저감 사례

A Case of Workers' Exposure Reductions for Chemicals in a Polyurethane Pad Process through the Substitution of Raw Materials

  • 장재길 (한국산업안전보건공단 산업안전보건연구원) ;
  • 박현희 (한국산업안전보건공단 산업안전보건연구원)
  • Jang, Jae-Kil (Occupational Safety and Health Research Institutes, Korea Occupational Safety and Health Agency) ;
  • Park, Hyunhee (Occupational Safety and Health Research Institutes, Korea Occupational Safety and Health Agency)
  • 투고 : 2014.07.25
  • 심사 : 2014.09.11
  • 발행 : 2014.09.30

초록

Objectives: The aim of this case study is to verify the chemical exposure reductions for various chemicals by substituting the ingredients of raw materials in a polyurethane(PU) foaming industry. The PU foaming process was making various passenger car seats from chemicals such as toluene diisocinate(TDI), methylene bisphenyl isocyanate(MDI) and polyols. Methods: Basic process data and workers' health effects could be gathered by interviewing managers and reviewing previous exposure monitoring data. Amine, aldehyde and isocyanate chemicals were analyzed following the NIOSH-NMAM. Area sampling methods rather than personal sampling were introduced for this field investigation. Results: Two amines, triethylene diamine(TEDA) and N,N,N',N'-Tetramethyl-1,6- hexanediamine(TMHDA) were identified in raw polyol, cured PU foam and air. The average concentrations of TEDA and TMHDA showd less than 1 ppm by area sampling; however, that caused halovision among workers in PU-PAD process. Aldehydes and isocyanates were detected in the air while the concentrations were relatively low compare to occupational exposure limits. Successful raw material substitution from nonreactive amine to reactive amine could reduces air-borne amine and aldehyde levels by about 70%. Halovision had been disappeared successfully in the process. Conclusions: Several amines caused halovision among workers in PU-PAD process, especially during summer season in spite of relatively low levels. Combination of reactive amines into urethane foam could reduced vapor generation into air, which resulted in the elimination of eye troubles in the process.

키워드

참고문헌

  1. Åkesson B, Floren I, Skerfving S. Visual disturbances after experimental human exposure to triethylamine. Brit J Ind Med 1985;42:848-850.
  2. Akesson B, Bengtsson M, Floren I. Visual disturbances after industrial triethylamine exposure. Int Arch Occup Health 1986;57:297-302. https://doi.org/10.1007/BF00406184
  3. American Conference of Governmental Industrial Hygienits (ACGIH). Documentations for TLVs and BEIs-Methylene bisphenyl isocyanate. ACGIH 2001a.
  4. American Conference of Governmental Industrial Hygienits(ACGIH). Documentations for TLVs and BEIs-Toluene-2,4,-diisocyanate. ACGIH 2001b.
  5. American Conference of Governmental Industrial Hygienits(ACGIH). Documentations for TLVs and BEIs-Trimethyl amine. ACGIH 2001c.
  6. American Conference of Governmental Industrial Hygienits(ACGIH). Threshold limit values for chemical substance and physical agents & biological exposure indices. 2014
  7. Amour AJ. The toxicity of solvents. Manuf Chem Manur Pert 1949;20:540-544
  8. Belin L, Wass U, Audunsson G, Mathiasson L. Amines: Possible causative agents in the development of bronchial hyperreactivity in workers manufacturing polyurethanes from isocyanates. Brit J Ind Med 1983;40:251-257
  9. Brieger H, Hodes WA. Toxic effects of exposure to vapors of aliphatic amines. Arch Ind Hyg Occup Med 1951;3:287-291
  10. Bonauto DK, Sumner AD, Curwick CC, Whittaker SG, Lofgren DJ. Work-related asthma in the spray-on truck bed lining industry. J Occup Environ Med 2005;47:514-517 https://doi.org/10.1097/01.jom.0000161735.29805.45
  11. Dernehl CU. Health hazards associated with polyurethane foams. J Occup Med 1966;8:59-62
  12. Goldberg ME, Johnson HE. Autonomic ganglion activity and acute toxicologic effects of N,N,N',N'-tetramethyl-1, 3-butanediamine and triethylenediamine, two form catalyst amines. Toxicol App Pharmaco 1962;4:522-545 https://doi.org/10.1016/0041-008X(62)90038-8
  13. International Labor Office(ILO). Encyclopaedia of occupational health and safety, 4th Eds. Vol. 4. ILO, 1998;104.80-104.93
  14. Jang JK. Evaluation of the possession of measurement and analytical instruments among domestic work environment monitoring service providers (II). J of Korean Soc Occup Enviorn Hyg 2014;24(2):182-192 https://doi.org/10.15269/JKSOEH.2014.24.2.182
  15. Jeong JY, Analysis of korean quality control program for work environment monitoring. Program book of international conference for 10th anniversary of quality control program for work environment monitoring. Occupational Safety and Health Research Institutes, KOSHA. 2001
  16. Kim EA. Occupational asthma induced by isocyanates. Occup Health 2010; 271:5-9
  17. Luckenbach M, Kielar R. Toxic corneal epithelial edema from exposure to high atmospheric concentration of toluene diisocyanates. Am J Ophthal 1980;90:682-686 https://doi.org/10.1016/S0002-9394(14)75137-2
  18. Mellerio J, Weale RA. Hazy vision in amine plant operatives. Brit J Ind Med 1966:23;153-154
  19. Mastromatteo E. Recent occupational health experiences in Ontario. J Occup Med 1965;7:502-511.
  20. Ministry of Employment and Labor(MoEL). Occupational exposure limits for chemical and physical agents, MoEL Notification No. 2012-31. 2012
  21. Ministry of Employment and Labor(MoEL). Occupational Safety and Health Act, Act No. 10968. 2014
  22. National Institute for Occupational Safety and Health. Preventing vision disturbances and acute physical distress due to dimethylethylamine exposure. DHHS(NIOSH) Publication No. 88-103. Cincinnati, OH, 1988
  23. National Institute for Occupational Safety and Health. Health hazard evaluation(HHE) at the Johnson Controls automobile seat production facility in Greenfield, Ohio. HETA 90-0277-2487, Cincinnati, OH, 1995
  24. National Institute for Occupational Safety and Health. NIOSH Manual of Analytical Methods, Aliphatic aldehydes, NMAM 2018. 1994a
  25. National Institute for Occupational Safety and Health. NIOSH Manual of Analytical Methods, Aliphatic amines. NMAM 2010. 1994b
  26. National Institute for Occupational Safety and Health. NIOSH Manual of Analytical Methods, Aminoethanol compounds I, NMAM 2007. 1994c
  27. National Institute for Occupational Safety and Health. NIOSH Manual of Analytical Methods, monomeric isocyanates, NMAM 5521. 1994d
  28. Potts AM, Rouse EF, Eiferman RA, Au PC. An unusual type of keratopathy observed in polyurethane workers and its reproduction in experimental animals. Am J Ind Med 1986;9:203-213 https://doi.org/10.1002/ajim.4700090211
  29. Savit LE. Contact dermatitis encountered in the production of epoxy resins. Arch Derm Syph 1955;71:212-213 https://doi.org/10.1001/archderm.1955.01540260070014
  30. Smith DB, Henderson R. TDI vapor concentrations (Letter to the editor). J Occup Med 1975;17:413-414
  31. Watrous RM. Schulz HN. Cyclohexylamine, toxicity effects in industrial use. Ind Med Surg 1950;19:317-320

피인용 문헌

  1. Amines as occupational hazards for visual disturbance vol.54, pp.2, 2016, https://doi.org/10.2486/indhealth.2015-0071
  2. Two Cases of Corneal Edema Due to Vaporized Amine vol.59, pp.11, 2018, https://doi.org/10.3341/jkos.2018.59.11.1077