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논문 기본 정보

자료유형
학술저널
저자정보
성현주 (인하대학교) 조아현 (인하대학교) 김민선 (인하대학교) 김수빈 (인하대학교) 천영우 (인하대학교)
저널정보
한국위험물학회 한국위험물학회지 한국위험물학회지 제10권 제1호
발행연도
2022.6
수록면
38 - 48 (11page)
DOI
10.31333/kihm.2022.10.1.38

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연구배경
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초록· 키워드

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Even after the hydrofluoric acid accident in Gumi in 2012, chemical accidents, both large and small, continue to occur in the manufacturing industry, and the risk is particularly high in small and medium-sized businesses. They complain about the difficulty of dealing with safety and health issues due to lack of resources such as time, staff, and capital. As the facilities of chemical plants are becoming more sophisticated, the risk of accidents is increasing, and the accident rate in non-routine operations such as maintenance and process changes is high. Life Cycle Assessment (LCA) is a technique to analyze the entire flow of existing chemicals, but a life cycle that focuses on environmental aspects and manages risks in terms of safety engineering is required. In this study, risk assessment was conducted by analyzing the cases and frequency of chemical accidents in the life cycle of chemical product manufacturing sites. In particular, it was attempted to efficiently utilize limited resources by giving priority to quantitative evaluation. Cases of accidents in Korea and abroad were collected, and the intensity and frequency of occurrence were calculated for each accident case. As a result of the study, the priority of risk management of the facility was selected in the order of storage tank, reactor, pump and storage container, tank lorry and mixer. As a result of comparing the changes of the F-N curve for the storage tank and the mixer using the Safeti 8.4 program, it was shown that the storage tank has a higher priority than the mixer. It is judged that the limited resources of small and medium-sized businesses can be used efficiently through this study, and it is necessary to establish a unified form and reporting system for accurate frequency calculation.

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ABSTRACT
Ⅰ. 서론
Ⅱ. 연구방법
Ⅲ. 연구결과
Ⅳ. 결론
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