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Temporal trend and source apportionment of water pollution in different functional zones of Qiantang River, China

机译:钱塘江不同功能区水污染的时间趋势和源解析。

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摘要

The increasingly serious river water pollution in developing countries poses great threat to environmental health and human welfare. The assignment of river function to specific uses, known as zoning, is a useful tool to reveal variations of water environmental adaptability to human impact. Therefore, characterizing the temporal trend and identifying responsible pollution sources in different functional zones could greatly improve our knowledge about human impacts on the river water environment. The aim of this study is to obtain a deeper understanding of temporal trends and sources of water pollution in different functional zones with a case study of the Qiantang River, China. Measurement data were obtained and pretreated for 13 variables from 41 monitoring sites in four categories of functional zones during the period 1996-2004. An exploratory approach, which combines smoothing and non-parametric statistical tests, was applied to characterize trends of four significant parameters (permanganate index, ammonia nitrogen, total cadmium and fluoride) accounting for differences among different functional zones identified by discriminant analysis. Aided by GIS, yearly pollution index (PI) for each monitoring site was further mapped to compare the within-group variations in temporal dynamics for different functional zones. Rotated principal component analysis and receptor model (absolute principle component score-multiple linear regression, APCS-MLR) revealed that potential pollution sources and their corresponding contributions varied among the four functional zones. Variations of APCS values for each site of one functional zone as well as their annual average values highlighted the uncertainties associated with cross space-time effects in source apportionment. All these results reinforce the notion that the concept of zoning should be taken seriously in water pollution control. Being applicable to other rivers, the framework of management-oriented source apportionment is thus believed to have potentials to offer new insights into water management and advance the source apportionment framework as an operational basis for national and local governments.
机译:发展中国家日益严重的河水污染对环境健康和人类福利构成了巨大威胁。将河流功能分配给特定用途(称为分区)是揭示水环境对人类影响的适应性变化的有用工具。因此,表征时间趋势并确定不同功能区的负责任污染源可以大大提高我们对人类对河流水环境影响的认识。这项研究的目的是,以中国钱塘江为例,深入了解不同功能区的水污染的时间趋势和来源。在1996-2004年期间,从四类功能区的41个监测点获得了13个变量的测量数据并进行了预处理。一种探索性方法,结合了平滑和非参数统计检验,用于表征四个重要参数(高锰酸盐指数,氨氮,总镉和氟化物)的趋势,以解释通过判别分析确定的不同功能区之间的差异。在GIS的帮助下,进一步绘制了每个监测点的年度污染指数(PI),以比较不同功能区的时间动态的组内变化。旋转主成分分析和受体模型(绝对主成分评分-多元线性回归,APCS-MLR)表明,潜在的污染源及其相应的贡献在四个功能区之间有所不同。一个功能区每个站点的APCS值及其年度平均值的变化突出显示了与源分配中的跨时空效应相关的不确定性。所有这些结果强化了在水污染控制中应该认真考虑分区概念的观念。因此,认为适用于其他河流的以管理为导向的水源分配框架有潜力提供有关水管理的新见解,并有可能将水源分配框架作为国家和地方政府的运营基础。

著录项

  • 来源
    《Water Research》 |2011年第4期|p.1781-1795|共15页
  • 作者单位

    College of Environment and Natural Resources, Zhejiang University, Hangzhou, China;

    College of Environment and Natural Resources, Zhejiang University, Hangzhou, China;

    College of Environment and Natural Resources, Zhejiang University, Hangzhou, China;

    Ministry of Agriculture Key Laboratory for Non-point Pollution Control, Zhejiang University, Hangzhou, China;

    College of Environment and Natural Resources, Zhejiang University, Hangzhou, China;

    College of Environment and Natural Resources, Zhejiang University, Hangzhou, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    river water environment; temporal trend; source; functional zones; water management;

    机译:河流水环境;时间趋势;资源;功能区;水管理;

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