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Identifying and Classifying Pollution Hotspots to Guide Watershed Management in a Large Multiuse Watershed

机译:识别和分类污染热点以指导大型多用途流域中的流域管理

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摘要

In many locations around the globe, large reservoir sustainability is threatened by land use change and direct pollution loading from the upstream watershed. However, the size and complexity of upstream basins makes the planning and implementation of watershed-scale pollution management a challenge. In this study, we established an evaluation system based on 17 factors, representing the potential point and non-point source pollutants and the environmental carrying capacity which are likely to affect the water quality in the Dahuofang Reservoir and watershed in northeastern China. We used entropy methods to rank 118 subwatersheds by their potential pollution threat and clustered subwatersheds according to the potential pollution type. Combining ranking and clustering analyses allowed us to suggest specific areas for prioritized watershed management (in particular, two subwatersheds with the greatest pollution potential) and to recommend the conservation of current practices in other less vulnerable locations (91 small watersheds with low pollution potential). Finally, we identified the factors most likely to influence the water quality of each of the 118 subwatersheds and suggested adaptive control measures for each location. These results provide a scientific basis for improving the watershed management and sustainability of the Dahuofang reservoir and a framework for identifying threats and prioritizing the management of watersheds of large reservoirs around the world.
机译:在全球许多地方,大型水库的可持续性受到土地用途变化和上游流域直接污染负荷的威胁。但是,上游流域的规模和复杂性使流域规模污染管理的规划和实施成为一个挑战。在这项研究中,我们建立了一个基于17个因素的评估系统,这些因素代表着可能影响中国东北大伙房水库和流域水质的潜在点和非点源污染物以及环境承载力。我们使用熵方法按潜在污染威胁对118个子集水区进行排序,并根据潜在污染类型对子集水区进行聚类。结合排名分析和聚类分析,我们可以建议优先流域管理的特定区域(特别是两个污染潜力最大的子流域),并建议在其他较不脆弱的地区(91个污染可能性低的小流域)保护当前的做法。最后,我们确定了最有可能影响118个小流域中每个流域水质的因素,并针对每个位置提出了自适应控制措施。这些结果为改善大伙房水库的集水区管理和可持续性提供了科学依据,并为确定威胁和确定世界各地大型水库的集水区管理的优先次序提供了框架。

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