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A Numerical Study on the Mitigation Effect of Water Curtain for SiCl4 Toxic Gas Release

SiCl4 누출 시 수막설비의 방재효과에 대한 수치 해석 연구

  • 류태인 (화학물질안전원 사고예방심사2과) ;
  • 이은미 (화학물질안전원 사고예방심사1과) ;
  • 김승하 (화학물질안전원 사고예방심사1과) ;
  • 강성미 ((주)앤플럭스 유동2팀) ;
  • 신창현 (화학물질안전원 사고예방심사2과) ;
  • 조승범 (화학물질안전원 사고예방심사2과)
  • Received : 2023.02.02
  • Accepted : 2023.06.13
  • Published : 2023.06.30

Abstract

Silicone tetrachloride (SiCl4) leak accidents cause enormous human and environmental damage because it is highly toxic. Some handling facilities use water curtains to reduce the impact range of SiCl4. Although the water curtain is known as one of the most efficient technologies for post-release mitigation, its effect on reducing SiCl4 concentration needs to be investigated scientifically and quantitatively. In this study, three-dimensional computational fluid dynamics (CFD) was used to investigate the physical and chemical effects of water curtains as a release-mitigation system for SiCl4. SiCl4 is released and dispersed five seconds prior to the operation of the water curtain. Once the water curtain works, the SiCl4 reacts chemically with the water and its concentration decreases rapidly; it reaches an emergency response planning guidelines level 2 (ERPG-2) of 5 parts per million (ppm) at about 570 m. We observed, however, that the physical effect of water curtains on reducing SiCl4 concentration is insignificant when the chemical effect is eliminated. These results are crucial since they can be a scientific and quantitative basis for the 'technical guidelines for estimating the accident affected range'. In order to protect the public from chemical accidents, more toxic gas mitigation technologies need to be developed.

Keywords

References

  1. Ministry of Environment, "Chemical Accident Investigation Team Impact Investigation Result Report", 2015.
  2. G. C. White, "The Handbook of Chlorination"(2nd Ed), 1986.
  3. Cameo Chemicals, "https://cameochemicals.noaa.gov/", Retrieved on 12.07.2022.
  4. S. K. Ignatov, P. G. Sennikov, Alexey G. Razuvaev, L. A. Chuprov, O. Schrems and B. S. Ault, "Theoretical Study of the Reaction Mechanism and Role of WaterClusters in the Gas-Phase Hydrolysis of SiCl4", J. Phys. Chem. A, Vol. 107, No. 41, pp. 8705-8713, 2003. https://doi.org/10.1021/jp034618h
  5. National Institute of Chemical Safety, "Key Info Guide for Accident Preparedness Substances", 2022.
  6. J. Woo, C. Shin, "A Study on the Damage Range of Chemical Leakage in Polysilicon Manufacturing Process", J. Korean Institute of Gas, Vol. 22, No. 4, pp. 55-62, 2018.
  7. P. D. Moskowitz, V. M. Fthenakis, L. D. Hamilton, P. Kalb and J. C. Lee, New Risks: Issues and Management, 1990.
  8. National Institute of Chemical Safety, Technical Guidelines for Estimating the Accident Affected Range, 2021
  9. National Institute of Chemical Safety, Manual of Plans for Prevention and Management of Chemical Accidents, 2021
  10. W. S. Cho and E. S. Kim, "An Estimation of the Consequence Analysis for Asphyxiation Accident in Confined Space using CFD", J. Korean Soc. Saf., Vol.33, No. 5, pp 28-34, 2018
  11. D. S. Min, S. Choi, E. Oh, J. Lee, C. Lee, K. Choi and S. Jung, "Numerical Modelling for Effect of Water Curtain in Mitigating Toxic Gas Release", J. Loss Prev. Process Ind., Vol. 63, 103972, 2020.
  12. J.-H. Back, H.-J. Lee and C. B. Jang, "A Methodology for Determination of the Safety Distance in Chemical Plants using CFD Modeling", J. Korean Soc. Saf., Vol. 31, No. 3, pp. 162-167, 2016. https://doi.org/10.14346/JKOSOS.2016.31.3.162
  13. K. -J. Kim, D.-W. Song and S. -K. Lee, "A Study on Performance of Water Curtain Nozzles for Protection of Wooden Cultural Properties from Forest Fire", J. Korea Inst. Fire Sci. Eng., Vol. 26, No. 3, pp. 8-13, 2012. https://doi.org/10.7731/KIFSE.2012.26.3.008
  14. J.-U. Choi and S.-W. Cho, "The Water Curtain Installation Guideline for Fire Spread Prevention in Market", Korean Journal of Air-Conditioning and Refrigeration Engineering, Vol. 28, No. 7, pp. 269-274, 2016. https://doi.org/10.6110/KJACR.2016.28.7.269
  15. Fluent user's guide, 2020R1 help system, Ansys, Inc., 2021.
  16. National Institute of Chemical Safety, "KORA(Korea Off-site Risk Assessment Supporting Tool)", 2021.
  17. National Institute of Chemical Safety, "Technical Guidelines for Accident Scenario Selection and Risk Analysis", 2021.
  18. C. J. Lee, "Principle and Development of Water Spray Fire Extinguishing System", Fire Protection Technology, Serial No.32, pp. 38-47, 2002.
  19. Ministry of Environment, "Report on Impact Assessment of Silicon Tetrachloride Leak Chemical Accident by OCI Co. in Gunsan city", 2015.
  20. Center for Chemical Process Safety, "Guidelines for Postrelease Mitigation Technology in the Chemical Process Industry", 1997.