School of Civil and Resource Engineering, University of Science and Technology Beijing, Beijing 100083, China.
Institute of Urban Safety and Environmental Science, Beijing Academy of Science and Technology (Beijing Municipal Institute of Labour Protection), Beijing 100077, China.
Int J Environ Res Public Health. 2022 Dec 13;19(24):16713. doi: 10.3390/ijerph192416713.
In China, food-freezing plants that use liquid ammonia, which were established in the suburbs in the 1970s, are being surrounded by urban built-up areas as urbanization progresses. These plants lead to extremely serious casualties in the event of a liquid ammonia leakage. The purpose of this thesis was to explore the key factors of personnel protection failure through the scenario evolution analysis of liquid ammonia leakage. The chain of emergencies and their secondary events were used to portray the evolutionary process of a full scenario of casualties caused by liquid ammonia leakage from three dimensions: disaster, disaster-bearing bodies, and emergency management. A Bayesian network model of liquid ammonia leakage casualties based on the scenario chain was constructed, and key nodes in the network were derived by examining the sensitivity of risk factors. Then, this model was applied to a food-freezing plant in Beijing. The results showed that inadequate risk identification capability is a key node in accident prevention; the level of emergency preparedness is closely related to the degree of casualties; the emergency disposal by collaborative onsite and offsite is the key to avoiding mass casualties. A basis for emergency response to the integration of personnel protection is provided.
在中国,20 世纪 70 年代在郊区建立的使用液氨的食品冷冻厂随着城市化的发展逐渐被城市建成区所包围。这些工厂一旦发生液氨泄漏,会导致极其严重的人员伤亡。本论文旨在通过液氨泄漏情景演化分析,探讨人员保护失效的关键因素。利用突发事件链及其次生事件,从灾害、承灾体和应急管理三个维度描绘了液氨泄漏导致人员伤亡的全场景演化过程。基于情景链构建了液氨泄漏人员伤亡的贝叶斯网络模型,并通过风险因素灵敏度检验得出网络中的关键节点。然后,将该模型应用于北京市的一家食品冷冻厂。结果表明,风险识别能力不足是事故预防的关键节点;应急准备水平与伤亡程度密切相关;现场与场外协同应急处置是避免大量人员伤亡的关键。为整合人员保护的应急响应提供了依据。