A Supportive Framework for Collaborative Implementation of Quantitative Risk Analysis in the Hazardous Process Industry and Application to Natural Gas Plant

Author:

Yoon Ik Keun1,Lim Dong Yun2,Jung Ho Jin1,Seo Jae Min2,Oh Shin Kyu3

Affiliation:

1. Korea Gas Corporation Reseach Institute Divison

2. Safetia Co., LTD.

3. Department of Mechanical Engineering, Hoseo University

Publisher

Society of Chemical Engineers, Japan

Subject

General Chemical Engineering,General Chemistry

Reference35 articles.

1. American Institute of Chemical Engineers ed.; Guideline for Chemical Process Quantitative Risk Analysis, 2nd ed., American Institute of Chemical Engineers, New York, U.S.A. (2000)

2. American Institute of Chemical Engineers ed.; Guideline for Developing Quantitative Safety Risk Criteria, American Institute of Chemical Engineers, Wiley, New York, U.S.A. (2009)

3. Baker, J. A. III, N. Leveson, F. L. Bowman, S. Priest, G. Erwin, I. Rosenthal, S. Gorton, P. V. Tebo, D. Hendershot, D. A. Wiegmann and L. D. Wilson; The Report of the BP US Refineries Independent Safety Review Panel, pp. 243–257, http://www.csb.gov/assets/1/19/Baker_panel_report.pdf (2007)

4. Basta, C., M. Struckle and M. Christou; Implementing Art.12 of the Sevess II Directive: Overview of Roadmap for Land Use Planning in Selected Member States, pp. 65–70, European Commission Joint Research Centre Institute for the Protection and the Security of the Citizens, Luxembourg, Italy (2008)

5. Cozzani, V., R. Bandini, C. Basta and M. D. Christou; “Application of Land-Use Planning Criteria for the Control of Major Accident Hazards: A Case-Study,” J. Hazard. Mater., A136, 170–180 (2006)

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