Aerodynamic diameter and radioactivity distributions of radioactive aerosols from activated metals cutting for nuclear power plant decommissioning

Citations

WEB OF SCIENCE

53
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SCOPUS

61

초록

Radioactive aerosols from nuclear power plant decommissioning have not been actively studied compared to those from severe accidents. However, it will be more critical issues in the future. The radioactive aerosols will deposit on the surfaces of matter and disperse in the working space. Hence, the workers in nuclear power plant decommissioning may inhale some of the aerosols during the normal operation or accident. The health effects of aerosols depend not only on the particle size but also on the aerodynamic and thermodynamic characteristics. Therefore, it is crucial to understand the distribution of radioactive aerosols regarding their aerodynamic diameters, radioactive isotopes, and chemical forms to ascertain the respirable fraction. We analyze the effect of the cutting method, cutting material, and cutting conditions on the mass and radioactivity distributions of radioactive aerosols and identify the dominant factor for the safety of workers in the nuclear power plant decommissioning process. We confirm that the chemical composition and radioactive contamination in cutting material affect the aerodynamic diameter distribution and the amount of aerosol. Finally, we suggest the underwater plasma arc cutting process that could minimize the internal dose of workers at the nuclear power plant decommissioning sites.

키워드

Radioactive aerosolsDecommissioningInternal doseAerodynamic diameterCutting methodsPARTICLE-SIZE DISTRIBUTIONPERFORMANCE EVALUATIONOXIDE NANOPARTICLESSECONDARY EMISSIONSCHEMICAL-ANALYSISTWOMEY ALGORITHMCASCADE IMPACTORREACTORCHERNOBYLACCIDENT
제목
Aerodynamic diameter and radioactivity distributions of radioactive aerosols from activated metals cutting for nuclear power plant decommissioning
저자
Chae, NakkyuLee, Min-HoChoi, SungyeolPark, Byung GiSong, Jong-Soon
DOI
10.1016/j.jhazmat.2019.02.093
발행일
2019-05-05
유형
Article
저널명
Journal of Hazardous Materials
369
페이지
727 ~ 745