实施地下水污染联防联控的新区域划分框架:中国渤海湾西部案例研究。

Journal of hazardous materials Pub Date : 2024-10-05 Epub Date: 2024-08-18 DOI:10.1016/j.jhazmat.2024.135565
Bin Hu, Panwen Li, Ruihui Chen, Yinan Zheng, Jiao Li, Yi Li
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引用次数: 0

摘要

为应对中国沿海地区地下水污染挑战,地下水污染联防联控(GPPC)战略已得到广泛实施。然而,由于缺乏区域优先控制顺序和准确的修复水平,区域地下水污染控制和治理效率无法达到预期效果。因此,本研究开发了一种新的区域划分框架方法,用于划分 GPPC 区域,并与综合污染指数方法、DRASTIC 模型、源头分摊法相结合。为验证新的方法框架,对中国渤海湾西部秦皇岛市的地下水污染进行了案例研究,计算污染防治分区。共选取了 340 个浅层含水层的地下水样本,9 种目标污染物(NO3-、NO2-、NH4+、As、Cd、Cr、Cu、Pb 和 Ni)作为 GPPC 区域化的数据集。结果表明,GPPC 区划进一步明确了秦皇岛市地下水污染保护与治理的方向。与传统方法相比,新的 GPPC 区划在地下水功能完整性和划分方面更好地反映了地下水流动特征和污染迁移富集规律。这种新的区域划分框架方法有助于为中国地下水污染区划的精细化划分和地下水资源管理的精准污染控制提供支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The new region demarcation framework for implementing the joint prevention and control of groundwater pollution: A case study in western of Bohai Bay, China.

The joint groundwater pollution prevention and control (GPPC) strategy has been extensively implemented to address the coastal region groundwater pollution challenges in China. However, regional groundwater pollution control and treatment efficiency cannot achieve the expected results due to the lack of regional priority control orders and accurate restoration levels. Thus, this study developed a new region demarcation framework method for delineating GPPC zones, in tandem with a comprehensive pollution index method, the DRASTIC model, source apportionment. To validate the new methodological framework, a case study of groundwater pollution in Qinhuangdao, the western of Bohai Bay, China, was implemented to calculate pollution prevention and control zoning. In total, 340 groundwater samples from shallow aquifers with 9 target pollutants (NO3-, NO2-, NH4+, As, Cd, Cr, Cu, Pb, and Ni) were selected as the dataset for GPPC regionalization. The results showed that GPPC zoning further clarified the direction of groundwater pollution protection and management in Qinhuangdao. Compared to the traditional method, the new GPPC zoning better reflects groundwater mobility characteristics and pollution transport and enrichment patterns in terms of groundwater functional integrity and delineation. This new regional demarcation framework method contributes to providing support for the fine division of groundwater pollution zoning and precise pollution control for groundwater resource management in China.

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