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Risks of airborne pollution accidents in a major conurbation: case study of Zhangjiakou,a host city for the 2022 Winter Olympics
Authors:Email authorEmail author  Jing?Liu  Zhijiao?Zhang  Alistair?G?L?Borthwick  Yanpeng?Cai  Lei?Dong  Xi?Du
Institution:1.State Key Laboratory of Water Environment Simulation, School of Environment,Beijing Normal University,Beijing,China;2.Institute of Environmental Risk and Damages Assessment,Guangdong Provincial Academy of Environmental Science,Guangzhou,China;3.School of Engineering,The University of Edinburgh,Edinburgh,UK;4.St Edmund Hall,Queen’s Lane, Oxford,UK
Abstract:The number of airborne pollution accidents is second only to that of water-borne pollution accidents, in recorded environmental disasters. Acute casualties and public health costs have prompted many airborne pollution risk analyses. To date, few assessment methods have been carried out at regional-scale to quantify acute airborne pollution risk. Herein, a Hybrid Simulation and Risk Analysis approach, involving a systematic combination of simulation, risk ranking, and standardized analysis, is proposed at regional scale. Gaussian and heavy-gas models are utilized in the simulation process, and acute exposure limits preferentially adopted in the risk analysis. The case study shows that 34 of 243 townships in Zhangjiakou City of north China, one of the twin cities selected to host the 2022 Winter Olympics, are threatened by airborne risk sources. It is found that the accidental air pollution risk is comparatively higher in the Xuanhua and Wanquan conurbations. High-risk chemical enterprises (312–432 risk scores) are mostly located near urban areas with high population density where many people are vulnerable receptors to potential air pollution accidents. The resulting risk map indicates that acute airborne pollution from Zhangjiakou would not be a threat either to the proposed Olympic site at Chongli or to downwind Beijing.
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