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首页> 外文期刊>The Science of the Total Environment >Comprehensive assessment of groundwater pollution risk based on HVF model: A case study in Jilin City of northeast China
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Comprehensive assessment of groundwater pollution risk based on HVF model: A case study in Jilin City of northeast China

机译:基于HVF模型的地下水污染风险综合评价-以东北吉林市为例

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摘要

A comprehensive model for groundwater risk assessment was proposed by combining the hazard of contaminated sources (H), groundwater intrinsic vulnerability (V) and groundwater function value (F), and verified in Jilin City of northeast China. This model is characterized by integrating groundwater resource, ecology, and geological environment under the impact of climate change and human activities. The hazard of potential polluted sources was assessed by quantifying the properties and the potential infiltrating load of contaminants. The groundwater intrinsic vulnerability was evaluated by the DRASTIC model. The groundwater function value was assessed by multiplying seventeen indexes with their corresponding weightings. The groundwater pollution risk mapping of Jilin City was generated based on ArcGIS and validated by the level difference method between the risk classification and the pollution classification. The results showed that groundwater has a relatively low possibility of pollution because the area with less than, or equal to, the medium classification of risk accounted for 67.61% of the study area. The hazard harmfulness from the different contaminant sources played the most important role in determining the high groundwater pollution risk areas. Different influencing factors lead to relatively high pollution risk in specific areas. According to the validation of the level difference method, areas correctly identified by groundwater pollution risk mapping accounted for 95.81% of the study area, which is nearly twice as high as that of specific vulnerability mapping. The HVF model proved to be suitable for assessing groundwater pollution risk in Jilin City of northeast China. The groundwater pollution risk mapping can be applied for the effective protection and sustainable supply of groundwater.
机译:结合污染源的危害(H),地下水固有脆弱性(V)和地下水功能价值(F),提出了一种综合的地下水风险评价模型,并在东北吉林市进行了验证。该模型的特点是在气候变化和人类活动的影响下,整合地下水资源,生态和地质环境。通过量化污染物的特性和潜在的渗透负荷来评估潜在污染源的危害。通过DRASTIC模型评估了地下水的固有脆弱性。通过将十七个指标与其相应的权重相乘来评估地下水功能值。吉林市地下水污染风险图谱是基于ArcGIS生成的,并通过风险分类与污染分类之间的层次差异法进行了验证。结果表明,地下水的污染可能性相对较低,因为危险等级小于或等于中等的区域占研究区域的67.61%。在确定高地下水污染风险区域时,来自不同污染物源的危害危害发挥了最重要的作用。不同的影响因素导致特定区域的相对较高的污染风险。根据水平差法的验证,通过地下水污染风险图正确识别的区域占研究面积的95.81%,几乎是特定脆弱性图的两倍。 HVF模型被证明适用于评估中国东北吉林市的地下水污染风险。地下水污染风险图谱可用于有效保护和可持续供应地下水。

著录项

  • 来源
    《The Science of the Total Environment》 |2018年第1期|1518-1530|共13页
  • 作者单位

    State Environmental Protection Key Laboratory of Simulation and Control of Groundwater Pollution, Chinese Research Academy of Environmental Sciences;

    College of Water Sciences, Beijing Normal University;

    Institute of Engineering Mechanics, China Earthquake Administration;

    State Environmental Protection Key Laboratory of Simulation and Control of Groundwater Pollution, Chinese Research Academy of Environmental Sciences;

    Chengdu Hydrogeological and Engineering Geological Brigade, Sichuan Bureau of Geology and Mineral Resources;

    State Environmental Protection Key Laboratory of Simulation and Control of Groundwater Pollution, Chinese Research Academy of Environmental Sciences;

    College of Water Sciences, Beijing Normal University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Groundwater pollution risk; Intrinsic vulnerability; Hazard; Groundwater function value;

    机译:地下水污染风险本征脆弱性危害地下水功能值;

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