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A novel two-stage evaluation system based on a Group-G1 approach to identify appropriate emergency treatment technology schemes in sudden water source pollution accidents

机译:一种基于Group-G1方法的新颖的两阶段评估系统,以识别突发水源污染事故中的适当应急处理技术方案

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摘要

Sudden water source pollution resulting from hazardous materials has gradually become a major threat to the safety of the urban water supply. Over the past years, various treatment techniques have been proposed for the removal of the pollutants to minimize the threat of such pollutions. Given the diversity of techniques available, the current challenge is how to scientifically select the most desirable alternative for different threat degrees. Therefore, a novel two-stage evaluation system was developed based on a circulation-correction improved Group-G1 method to determine the optimal emergency treatment technology scheme, considering the areas of contaminant elimination in both drinking water sources and water treatment plants. In stage 1, the threat degree caused by the pollution was predicted using a threat evaluation index system and was subdivided into four levels. Then, a technique evaluation index system containing four sets of criteria weights was constructed in stage 2 to obtain the optimum treatment schemes corresponding to the different threat levels. The applicability of the established evaluation system was tested by a practical cadmium-contaminated accident that occurred in 2012. The results show this system capable of facilitating scientific analysis in the evaluation and selection of emergency treatment technologies for drinking water source security.
机译:由有害物质引起的突然水源污染已逐渐成为对城市供水安全的重大威胁。在过去的几年中,已经提出了各种用于去除污染物的处理技术,以使这种污染的威胁最小化。考虑到可用技术的多样性,当前的挑战是如何科学地为不同威胁程度选择最理想的替代方案。因此,考虑到饮用水源和水处理厂中污染物去除的区域,基于循环校正改进的Group-G1方法开发了一种新颖的两阶段评估系统,以确定最佳的应急处理技术方案。在阶段1中,使用威胁评估指标体系预测了污染造成的威胁程度,并将其分为四个级别。然后,在阶段2中构建了包含四组标准权重的技术评估指标体系,以获得与不同威胁级别相对应的最佳处理方案。 2012年发生的一次实际镉污染事故对建立的评估系统的适用性进行了测试。结果表明,该系统能够在评估和选择饮用水源安全应急处理技术时促进科学分析。

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