Acknowledgement
Supported by : LG연암문화재단
References
- 백남원, 산업위생학개론, 신광출판사, 1996
- 윤충식, 백남원. 스테인레스 강에 대한 플럭스 코어드 아크 용접에서의 흄 발생량 및 입자 크기 분포에 관한 연구. 한국환경위생학회지 1999;25(2):1-7
- 윤충식. 나노입자에 의한 잠재된 건강상 위험과 보건학적 논 점들. 생화학분자생물학뉴스지(webzine) 2007;8:8-21
- 윤충식, 김정한. 스테인레스강 용접 중 발생하는 망간의 발생량및 함량 변화에 관한 연구.산업위생학회지 2006;16(3):254-263
- 윤충식, 박동욱, 박두용. 용접흄 중 금속함량 변화에 관한 연구. 한국환경보건학회지 2002;28(2):117-129
- 윤충식. 새 국제표준규격에 의한 수용성 유해금속의 평가. 한국산업위생학회지 2003;13(3):1-10
- American Conference of Governmental Industrial Hygienists (ACGIH). Threshold Limit Values for Chemical Substances and Physical Agents and Biological Exposure Indices. ACGIH: Cincinnati, OH;2007
- American Welding Society(AWS). Part II. Arc welding fumes and gases. In Fumes and gases in the welding environment (edited by Speight F.Y., Campbell, H.C.), American Welding Society: ISBN 0-87171-174-5;1987. p. 73-86
- Antonini JM. Health Effects of Welding. Critical Reviews in Toxicology 2003;33: 61-103 https://doi.org/10.1080/713611032
- Antonini JM, O'Callaghan JP, Miller DB. Development of an animal model to study thepotential neurotoxic effects associated with welding fume inhalation. NeuroToxicology 2006;27:745-751 https://doi.org/10.1016/j.neuro.2006.01.009
- Burgess WA. Recognition of health hazards in industry-A review of material and process. 2nd ed.: John Wiley & Sons Inc.;1994
- Karlsen JT, Farrants G, Torgrimsen T, Reith A. Chemical composition and morphology of welding fume particles and grinding dusts. Am. Ind. Hyg. Assoc. J. 2006;53: 290?97
- Koponen M, Gustafsson T, Kalliomaki P, Pyy L. Chromium and nickel aerosols in stainless steel manufacturing, grinding and welding. Am Ind Hyg Assoc J 1981;42:596-601 https://doi.org/10.1080/15298668191420332
- Jenkins NT. Chemistry of Airborne Particles from Metallurgical Processing. Ph.D. dissertation. Cambridge: Massachusetts Institute of Technology;2003
- Jenkins NT, Eagar TW. Chemical analysis of welding fume particles. Welding journal 2005;87s-93s
- Harris, MK. Welding Health and Safety-A field guide for OEHS professionals, American Industrial Hygiene Association(AIHA). AIHA Press. Faixrfax. Virginia 2002 p.17-40
- Hewitt PJ, Gray CN. Some difficulties in the assessment of electric arc welding fume. Am Ind Hyg Assoc J 1983;44(10):727-732 https://doi.org/10.1080/15298668391405643
- International Agency for Research on Cancer (IARC): Chromium, nickel, and welding. In IARC Monographs on the Evaluation of Carcinogenic Risks to Humans. . Lyon: IARC, 1990. pp. 447- 525
- International Organization for Standardization(ISO). ISO 15202-2- 2001, Work place air-Determination of metals and metalloids in airborne particulate matter by inductively coupled plasma atomic emission spectrometry-part 2: sample preparation. Geneva, Switzerland, ISO(www.iso.ch); 2001
- Korea Institute of Industrial Technology (KIIT). The evaluation techniques of fume generation characteristics and feedability during Arc Welding (Korean). Seoul, KIIT; 1999.p.34-70
- National Institute for Occupational Safety and Health (NIOSH):Criteria for a recommended standard welding, brazing, and thermal cutting. DHHS(NOSH) Publication No. 88-110, Cincinnati, OH: NIOSH, 1988
- Pedersen B, Thomsen E, Stern RM. Some problems in sampling, analysis and evaluation of welding fumes containing Cr(VI). Ann Occup Hyg 1987;31:325-338 https://doi.org/10.1093/annhyg/31.3.325
- Stern RM. Process-dependent risk of delayed health effects for welders. Environ Health Perspect 1981;41:235-253 https://doi.org/10.2307/3429321
- Yoon CS, Paik NW, Kim JH. Fume generation and content of total chromium and hexavalent chromium in flux-cored arc welding. Ann Occup Hyg 2003;47:671-80 https://doi.org/10.1093/annhyg/meg063
- Voitkevich, V. Chapter 2. Welding fume properties. In welding fumes-formation, properties and biological effects. England: Abington Publishing; 1995. p. 18-77