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논문 기본 정보

자료유형
학술저널
저자정보
박시현 (서경대학교 나노생명공학과) 박세정 (대구한의대학교 보건학부) 박태현 (대구한의대학교 보건학부) 윤단기 (서울대학교 환경대학원) 정종현 (동국대학교 생명과학과) 강성규 (동국대학교 일산병원 직업환경의학과) 이동수 (Department of Nano and Biological Engineering) 서영록 (Faculty of Health Science, Daegu Haany University) 안연순 (Faculty of Health Science, Daegu Haany University) 이철민 (Graduate School of Environmental Studies, Seoul National University)
저널정보
한국산업보건학회 (구 한국산업위생학회) 한국산업보건학회지 한국산업보건학회지 제28권 제1호
발행연도
2018.1
수록면
1 - 17 (17page)

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초록· 키워드

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Objectives: This research is part of a study to be conducted over five years starting from 2017 by the Ministry of Environment on the development of technologies to evaluate the impact of chemical accidents on the human body. Methods: For this research, a five-stage specific study method was developed. Results: In brief, the developed health risk assessment method can be summarized as follows. First, a health risk assessment system was built based on the guidelines set forth by the USA NRC/NAS. Second, based on the disease manifestation theory, the health risk assessment method was divided into 1) a carcinogenic health risk assessment method focused on all carcinogens except non-genotoxic carcinogens and 2) a non-carcinogenic health risk assessment method focused on noncarcinogens including non-genotoxic carcinogens. Third, the detailed contents of the health risk assessment method were developed in four stages(hazard identification, dose-response assessment, exposure assessment, and risk determination) through theoretical consideration of the assessment of the level of health risk related to chemical exposure. Finally, a health risk assessment methodology, classified into stages to address acute, subacute/subchronic, and chronic conditions was developed after considering the physicochemical behavior of hazardous chemicals upon implementation of countermeasures after a chemical accident. Conclusions: A method to evaluate the health risks related to toxic chemicals generated by chemical accidents was developed. This study was performed with the purpose of developing a mathematical health risk assessment method to evaluate the health effects of exposure to hazardous chemicals upon implementation of emergency countermeasures after chemical accidents.

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