Toxic Release Damage Distance Assessment Based on the Short-Cut Method: A Case Study for the Transport of Chlorine and Hydrochloric Acid in Densely Urbanized Areas in the Mediterranean Region

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Angela M. Tomasoni*, Abdellatif Soussi and Roberto Sacile, 
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Abstract

The transportation of dangerous goods by road is the most accident-prone mode of transportation, even if accidents involving road transportation of dangerous goods are considered as a Low Probability and High Consequence event (LPHC event). However, several dangerous goods are transported by road networks, such as petroleum products and chemicals, which can generate major dangerous consequences such as spills, explosions, fires, or toxic clouds. In this context, this article presents a method to calculate and quickly quantify the sizes of impact zones characterized by high lethality and irreversible injuries to people in the case of a hazardous materials transport accident. This method is used as a module for the analysis of the consequences of different potential accident scenarios, for the Web-GIS platform proposed by LOSE+LAB, that implements appropriate ICT tools and systems for monitoring the flow of goods that would enable a continuous monitoring system at the cross-border level and transmit data and information to the territory actors involved in the management of dangerous goods according to the ADR standard. The proposed method provides the user with a visualization of the possible outcomes of an event by reproducing the impact area for different accident scenarios, which can provide quick maps of the hazard and represents a decision support system for territorial governance in terms of intervention and response protocols for emergency management in the cases of dangerous goods accidents.

Abstract Image

基于捷径法的毒性释放损害距离评估——以地中海地区城市密集区氯和盐酸的迁移为例
道路危险货物运输是最容易发生事故的运输方式,即使涉及道路危险货物运输的事故被认为是低概率和高后果事件(LPHC事件)。然而,一些危险品是通过道路网络运输的,比如石油产品和化学品,这可能会产生重大的危险后果,比如泄漏、爆炸、火灾或有毒云。在此背景下,本文提出了一种方法来计算和快速量化在危险材料运输事故中具有高致死率和对人的不可逆伤害特征的冲击区大小。该方法被用作分析不同潜在事故情景后果的模块,用于LOSE+LAB提出的Web-GIS平台,该平台实施了适当的ICT工具和系统,用于监测货物流动,从而实现跨境层面的连续监测系统,并根据ADR标准将数据和信息传输给涉及危险货物管理的领土行动者。所提出的方法通过再现不同事故情景的影响区域,为用户提供了事件可能结果的可视化,这可以提供危害的快速地图,并代表了在危险货物事故情况下应急管理的干预和响应协议方面的领土治理决策支持系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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