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基于物理过程的矿区地下水污染风险评价
摘要点击 2641  全文点击 1036  投稿时间:2013-08-09  修订日期:2013-11-13
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中文关键词  尾矿库区  地下水污染  风险评价  基于物理过程  数值模拟
英文关键词  mining area  groundwater pollution  risk assessment  physical processes based  numerical simulation
作者单位E-mail
孙法圣 吉林大学环境与资源学院,长春 130021 sunfasheng01@163.com 
程品 吉林大学环境与资源学院,长春 130021  
张博 吉林大学环境与资源学院,长春 130021 hongmeizhangbo@163.com 
中文摘要
      目前国内外所做的地下水污染风险评价的实例研究一般都是从地下水的脆弱性研究出发,并未过多地考虑特征污染物对污染后果的影响.脆弱性是环境对污染物的自然敏感性,而地下水污染评价中更应当体现出污染物在地下水中的迁移分布特性.为了完善地下水污染风险评价的理论和方法,以某尾矿区为例提出了基于物理过程的地下水污染风险评价方法,在污染发生之前,根据经济社会的敏感性条件和污染物将来可能的分布范围,事先划分各个污染风险等级在含水层空间上的分布范围,然后据此反推各个风险等级所对应的污染物源强,以此作为地下水污染风险评价等级的划分标准,通过对污染物在包气带和含水层中的运移进行数值模拟来评价尾矿区地下水的污染风险.结果表明,这种基于物理过程的地下水污染风险评价方法可以给出污染物浓度和风险水平在空间和时间上的分布规律,对于单个点状的污染场地来说,具有详尽的风险表征方式,优于以往基于含水层固有脆弱性指数法的风险评价方法,该方法适用于现有污染场地的风险评价、场地优化选址和为场地建设提供设计参数.
英文摘要
      Case studies of groundwater pollution risk assessment at home and abroad generally start from groundwater vulnerability, without considering the influence of characteristic pollutants on the consequences of pollution too much. Vulnerability is the natural sensitivity of the environment to pollutants. Risk assessment of groundwater pollution should reflect the movement and distribution of pollutants in groundwater. In order to improve the risk assessment theory and method of groundwater pollution, a physical process based risk assessment methodology for groundwater pollution was proposed in a mining area. According to the sensitivity of the economic and social conditions and the possible distribution of pollutants in the future, the spatial distribution of risk levels in aquifer was ranged before hand, and the pollutant source intensity corresponding to each risk level was deduced accordingly. By taking it as the criterion for the classification of groundwater pollution risk assessment, the groundwater pollution risk in the mining area was evaluated by simulating the migration of pollutants in the vadose zone and aquifer. The result show that the risk assessment method of groundwater pollution based on physical process can give the concentration distribution of pollutants and the risk level in the spatial and temporal. For single punctuate polluted area, it gives detailed risk characterization, which is better than the risk assessment method that based on aquifer intrinsic vulnerability index, and it is applicable to the risk assessment of existing polluted sites, optimizing the future sites and providing design parameters for the site construction.

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