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Process Safety Management of Highly Hazardous Chemicals is a regulation promulgated by the U.S. Occupational Safety and Health Administration (OSHA). [1] It defines and regulates a process safety management (PSM) program for plants using, storing, manufacturing, handling or carrying out on-site movement of hazardous materials above defined amount thresholds.
Process safety management (PSM) is a practice to manage business operations critical to process safety. It can be implemented using the established OSHA scheme [1] or others made available by the EPA, [2] AIChE's Center for Chemical Process Safety, [3] or the Energy Institute. [4] PSM schemes are organized in 'elements'.
The Rail Safety Management System requirements are set out in the Railway Safety Management System Regulations. [16] Occupational Safety and Health Administration (OSHA) - The Process Safety Management of Highly Hazardous Chemicals standard (29 CFR 1910.119) [9] Independent occupational safety management standards include:
CFR, Title 29-Labor, Part 1910--Occupational Safety and Health Standards, § 1910.119 U.S. OSHA regulations regarding "Process safety management of highly hazardous chemicals" (especially Appendix C). FAA Order 8040.4 establishes FAA safety risk management policy.
The text also highlighted the 14 principles on which this should be based. These were implemented in 1992 in OSHA's Process Safety Management regulation (Title 29 CFR Part 1910, Subpart H § 1910.119), as well as in EPA's 1996 Risk Management Program (RMP) rule (Title 40 CFR Part 68).
Process Safety Management of Highly Hazardous Chemicals standard, 29 CFR 1910.119, Occupational Safety and Health Administration (OSHA, February 1992). [21] Safety Guidelines and Good Practices for Pipelines, ECE/CP.TEIA/2006/11, United Nations Economic Commission for Europe (December 2008). [22]
A fault tree diagram. Fault tree analysis (FTA) is a type of failure analysis in which an undesired state of a system is examined. This analysis method is mainly used in safety engineering and reliability engineering to understand how systems can fail, to identify the best ways to reduce risk and to determine (or get a feeling for) event rates of a safety accident or a particular system level ...