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Emergency Response to a Non-Collision HAZMAT Release from a Railcar

机译:从轨道车释放非碰撞Hazmat释放的紧急响应

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A manufacturer of a solid oxidizer experienced three successive hazardous material accidents/releases during a one-week period. This case study discusses the emergency response process and how it evolved as new information became available. The commodity, a granular solid classified as DOT 5.1, was known to be thermally unstable. The material was further known to be both water-reactive and susceptible to autocatalytic decomposition (i.e., its decomposition products accelerated the rate of decomposition). During decomposition the material has the capacity to generate a large volume of noncondensable gases. The manufacturer transported the commodity in bulk using pressure differential hopper railcars. After the occurrence of the first accident, the manufacturer implemented a rapid and effective emergency response to protect human health and the environment. Because this was a non-collision event, immediate consideration was given to the fleet of commodity-containing railcars in transit to customer sites. The technical challenges unique to rail transportation and railcar design greatly influenced the emergency response. These challenges and their resolution are discussed. Although the next two accidents resulted in loss of the commodity, there were no injuries or environmental impact. Data collected during the emergency response phase played a crucial role in the subsequent root cause investigation and in the design of safeguards to reduce the hazard of decomposition in future rail shipments.
机译:固体氧化剂的制造商在一周内经历了三种连续的危险物质事故/释放。本案例研究讨论了紧急响应过程以及如何在新信息中获得的方式发展。商品,粒状固体分类为点5.1,是热不稳定的。进一步已知该材料是水反应性和易受自催化分解的影响(即,其分解产物加速分解速率)。在分解期间,材料具有产生大量不可调味的气体的能力。制造商使用压差料斗轨道车辆散装散装。在第一次事故发生后,制造商实施了迅速有效的应急应对,以保护人类健康和环境。因为这是一个非碰撞事件,所以立即考虑到含有商品的铁路车队到顾客网站。铁路运输和铁路车设计具有独特的技术挑战极大地影响了应急响应。讨论了这些挑战和分辨率。虽然接下来的两次事故导致商品丧失,但没有伤害或环境影响。在应急响应阶段收集的数据在随后的根本原因调查中以及在保障方面的设计中发挥了至关重要的作用,以减少未来铁路货物中分解的危害。

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