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The National Stream Quality Accounting Network: a flux‐based approach to monitoring the water quality of large rivers

机译:国家河流水质核算网络:一种基于通量的方法来监测大型河流的水质

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Estimating the annual mass flux at a network of fixed stations is one approach to characterizing water quality of large rivers. The interpretive context provided by annual flux includes identifying source and sink areas for constituents and estimating the loadings to receiving waters, such as reservoirs or the ocean. Since 1995, the US Geological Survey's National Stream Quality Accounting Network (NASQAN) has employed this approach at a network of 39 stations in four of the largest river basins of the USA: the Mississippi, the Columbia, the Colorado and the Rio Grande. In this paper, the design of NASQAN is described and its effectiveness at characterizing the water quality of these rivers is evaluated using data from the first 3 years of operation. A broad range of constituents was measured by NASQAN, including trace organic and inorganic chemicals, major ions, sediment and nutrients. Where possible, a regression model relating concentration to discharge and season was used to interpolate between chemical observations for flux estimation. For water-quality network design, the most important finding from NASQAN was the importance of having a specific objective (that is, estimating annual mass flux) and, from that, an explicitly stated data analysis strategy, namely the use of regression models to interpolate between observations. The use of such models aided in the design of sampling strategy and provided a context for data review. The regression models essentially form null hypotheses for concentration variation that can be evaluated by the observed data. The feedback between network operation and data collection established by the hypothesis tests places the water-quality network on a firm scientific footing. Published in 2001 by John Wiley & Sons, Ltd.
机译:估算固定站网络的年质量通量是表征大河水质的一种方法。年度通量提供的解释性背景包括,确定成分的来源和汇区,并估算接收水(例如水库或海洋)的负荷。自1995年以来,美国地质调查局的国家河流质量核算网络(NASQAN)在美国四个最大流域(密西西比州,哥伦比亚,科罗拉多州和里奥格兰德州)的39个站点组成的网络中采用了这种方法。在本文中,描述了NASQAN的设计,并使用前3年的数据评估了其在表征这些河流水质方面的有效性。 NASQAN测量了各种各样的成分,包括痕量有机和无机化学物质,主要离子,沉积物和营养成分。在可能的情况下,将浓度与排放量和季节相关的回归模型用于在化学观测值之间进行插值以估算通量。对于水质网络设计,NASQAN的最重要发现是确定特定目标(即估算年度质量通量)的重要性,并从中明确提出数据分析策略,即使用回归模型进行内插在观察之间。这种模型的使用有助于设计抽样策略,并为数据审查提供了背景。回归模型实质上形成了浓度变化的零假设,可以通过观察到的数据对其进行评估。假设检验建立的网络运行与数据收集之间的反馈使水质网络处于牢固的科学基础上。 John Wiley&Sons,Ltd.于2001年出版。

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