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Identification and ranking of the risky organic contaminants in the source water of the Danjiangkou reservoir

机译:丹江口水库水源水中危险有机污染物的识别与分级

摘要

The Danjiangkou reservoir was selected to provide the source water for the middle routes of the South to North Water Transfer Project, which has provoked many environmental concerns. To date, investigations of water contamination of the source water of the Danjiangkou reservoir with organic micro-pollutants have been limited. This study was conducted to identify and rank organic contaminants that pose risks in the Danjiangkou reservoir. To this end, the Chemical Hazard Evaluation and Management Strategies (CHEMS-1) approach was adapted to integrate the deconvolution technology of qualitative identifying contaminants for site-specific environmental matrices. The samples were screened for the presence of 1093 contaminants using deconvolution technologies and the hazard values of the identified contaminants were calculated using the adapted CHEMS-1 approach according to their hazardous properties and occurrence in source water. The results showed that 46 contaminants from 1093 targets were present in Danjiangkou water, 23 of which appeared at frequencies higher than 50%, and 15 of which were identified as priorities. Over half (53%) of the high-ranked contaminants were polycyclic aromatic hydrocarbons (PAHs), with chrysene ranked highest on the list. Health risk assessment of the top-ranked PAHs was conducted and revealed that cancer risks of PAHs detected in the source water of Danjiangkou to different populations ranged from 10(-7) to 10(-6), indicating a low cancer risk to consumers. The results of this study indicated that the adapted CHEMS-1 approach was feasible for site-specific screening of organic contaminants to identify and rank potential priority pollutants.
机译:选择丹江口水库为南水北调中线工程提供水源,这引起了许多环境问题。迄今为止,对丹江口水库水源水中有机微量污染物的水污染研究还很有限。进行这项研究的目的是对在丹江口水库中构成风险的有机污染物进行识别和分类。为此,对化学危险性评估和管理策略(CHEMS-1)方法进行了调整,以整合针对特定场所环境矩阵定性识别污染物的反卷积技术。使用反卷积技术对样品中的1093种污染物进行了筛选,并根据其危险性和在水源水中的存在情况,使用改进的CHEMS-1方法计算了所识别污染物的危害值。结果表明,丹江口水域存在1093个目标污染物中的46种,其中23种以高于50%的频率出现,其中15种被确定为重点。超过一半(53%)的高级污染物是多环芳烃(PAHs),其中苯在榜单上排名最高。对排名靠前的多环芳烃进行了健康风险评估,结果表明,在丹江口原水中不同人群检测到的多环芳烃的癌症风险范围为10(-7)至10(-6),这表明消费者的癌症风险较低。这项研究的结果表明,采用适合的CHEMS-1方法可对有机污染物进行特定位置的筛选,以识别和排序潜在的优先污染物。

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