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An integrated approach for prioritization of river water quality sampling points using modified Sanders, analytic network process, and hydrodynamic modeling

机译:使用改进的砂光机,分析网络过程和流体动力学建模的河水质量采样点优先排序综合方法

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Determination of the water quality monitoring network (WQMN) is a vital stage for surveying ecosystem health. Studies have been done in determining the optimal number and location of sampling points, but seasonality of water quality, especially for heavy metals, has been rarely studied. For the first time, this study proposes a framework to determine the optimal location of sampling points to monitor lead (Pb). This study was conducted for the Karoun River, located in southwestern Iran. First, hydraulic characteristics of the river were simulated by implementing of MIKE11 software as well as water quality(variation of Pb concentration). Nash-Sutcliffe coefficient were 0.91 and 0.91 for discharge calibration and validation, respectively. Second, 16 potential sampling points were proposed using modified Sanders' approach considering seasonality. For a better accuracy in the WQMN layout and a more efficient site selection of sampling points, a 1-km buffer is stretched along the river for determining non-point source pollution sources and prioritizing candidate points. This leads to considering different land uses in the study area, while GIS software has been employed. Seasonal changes and land use have a significant impact on the location of optimal sampling points. The presented framework can be used to improve water quality and support watershed protection efforts.
机译:水质监测网络(WQMN)的测定是调查生态系统健康的重要阶段。已经在确定采样点的最佳数量和位置来完成研究,但很少研究水质的季节性,特别是对于重金属。这项研究首次提出了一种框架,用于确定采样点的最佳位置,以监控引线(PB)。这项研究是为位于伊朗西南部的Karoun河进行的。首先,通过实现Mike11软件以及水质(PB浓度的变化)来模拟河流的水力特性。用于放电校准和验证,NASH-SUTCLIFFE系数分别为0.91和0.91。其次,使用考虑季节性的改进的砂光机方法提出了16个潜在的采样点。在WQMN布局中的更好准确性和更有效的场地选择采样点,一个1公里的缓冲区沿河伸展,以确定非点源污染源和优先考虑候选点。这导致考虑到研究区域的不同土地用途,而GIS软件已被采用。季节性变化和土地利用对最佳采样点的位置产生了重大影响。本框架可用于提高水质,并支持流域保护努力。

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