Simultaneous Determination of Isocyanates by High Performance Liquid Chromatography

고속액체크로마토그래피를 이용한 이소시아네이트의 동시 정량

  • Lee, Seon Joo (Department of Occupational Hygiene, Graduate School of Occupational Health, Catholic University) ;
  • Lee, Kwang Mook (Department of Occupational Hygiene, Graduate School of Occupational Health, Catholic University) ;
  • Roh, Young Man (Catholic Industrial Medical Center, Catholic University Medical College)
  • 이선주 (가톨릭대학교 산업보건대학원 산업위생학과) ;
  • 이광묵 (가톨릭대학교 산업보건대학원 산업위생학과) ;
  • 노영만 (가톨릭대학교 의과대학 산업의학센타)
  • Published : 1994.11.30

Abstract

This study was designed to identify and quantitate airborne isocyanate simultaneously by HPLC. These samples were collected using 1-(2-pyridyl)piperazine(1-2PP) coated glass fiber filter from polyurethane painting works at 8 wood furniture factories in Kimpo and Inchun. The results obtained were as follows : 1. The most suitable mobile phase condition of simultaneously analyzing isocyanates was 0.01 M ammonium acetate buffer ACN(70/30) adjusted to pH 6.2 from the beginning of the analysis to 20 min and 0.01 M ammonium acetate buffer/ACN(50/50) adjusted to pH 6.2 from 21 min to 40 min using the gradient mode. The peaks of isocyanates were able to obtain within 30 min. 2. The recovery efficiencies for 2,6-TDI, 2,4-TDI, HDI and MDI urea derivates spiked at the target concentration on coated glass fiber tillers were 91.00, 93.42, 91.31 and 94.21 %, respectively. 3. The qualitative analysis of the isocyanates samples from polyurethane spray painting works in wood furnture factories identified Ihree isocyanates, 2,6-TDI, 2,4-TDI and MOI. And their concentration ranges were 0-312.6, 0-56.3 and $0-62.1{\mu}g/m^3$, respectively. A disadvantage of using the colorimetric method for isocyanate analysis is its inability of separating isocyanates. This study identified such three isocyanates as 2,6-TDI, 2,4-TDI and MDI from polyurethane spray painting works in wood furniture factories. These isocyanates were successfully quantitated by HPLC by modifying the mobile phase condition and switching to gradient mode.

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