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Dynamic Assessment of Comprehensive Water Quality Considering the Release of Sediment Pollution

机译:考虑泥沙污染释放的综合水质动态评价

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Comprehensive assessment of water quality is an important technological measure for water environmental management and protection. Previous assessment methods tend to ignore the influences of sediment pollutant release and dynamic change of the water boundary. In view of this, this paper explores a new method for comprehensive water quality assessment. Laboratory simulation experiments are conducted to analyze the influences of sediment pollutant release on water quality, and the results are taken as increments, coupled with original samples, to constitute a new set of evaluation samples. Dynamic and comprehensive water quality assessment methods are created based on a principal component analysis (PCA)/analytic hierarchy process (AHP)–variable fuzzy pattern recognition (VFPR) model and adopted to evaluate water quality. A geographic information system (GIS) is applied to visually display the results of water quality assessment and the change of the water boundary. This study takes Biliuhe Reservoir as an engineering example. The results show the change process of the water boundary, during which the water level is reduced from 63.10 m to 54.15 m. The reservoir water quality is fine, of which the water quality level (GB3838-2002) is between level 2 and level 3, and closer to level 2 taking no account of sediment pollutant release. The water quality of Biliuhe Reservoir, overall, is worse in summer and better in winter during the monitoring period. Meanwhile, the water quality shows the tendency of being better from upstream to downstream, and the water quality in the surface layer is better than that in the bottom layer. However, water quality is much closer, or even inferior, to level 3 when considering the release of nitrogen and phosphorus in sediments, and up to 42.7% of the original assessment results of the samples undergo changes. It is concluded that the proposed method is comparatively reasonable as it avoids neglecting sediment pollutant release in the water quality assessment, and the presentation of the evaluation results and change of the water boundary is intuitive with the application of GIS.
机译:水质综合评价是水环境管理与保护的重要技术措施。以前的评估方法倾向于忽略沉积物污染物释放和水边界动态变化的影响。有鉴于此,本文探索了一种综合水质评价的新方法。进行了实验室模拟实验,分析了沉积物污染物释放对水质的影响,并将结果与​​原始样本相加,以增量方式构成一组新的评估样本。基于主成分分析(PCA)/层次分析法(AHP)-可变模糊模式识别(VFPR)模型,创建了动态,全面的水质评估方法,并采用了该方法来评估水质。应用地理信息系统(GIS)以可视方式显示水质评估结果和水边界变化。本研究以碧流河水库为例。结果表明水边界的变化过程,在此过程中水位从63.10 m减小到54.15 m。水库水质优良,水质等级(GB3838-2002)在2级和3级之间,不考虑沉积物污染物释放,更接近2级。总体而言,在监测期内,碧流河水库的水质在夏季较差,在冬季较优。同时,水质呈现出从上游到下游更好的趋势,并且表层的水质优于底层的水质。但是,考虑到沉积物中氮和磷的释放,水质更接近甚至低于3级,并且样本原始评估结果中多达42.7%发生了变化。结论:该方法相对合理,避免了在水质评价中忽略沉积物污染物的释放,评价结果的表示和水域边界的变化通过GIS的应用是直观的。

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