Institute F.-A. Forel, University of Geneva, Route de Suisse 10, CH-1290 Versoix, Switzerland.
Rue du Gothard 2, CH-1225 Chêne-Bourg, Switzerland.
Water Res. 2014 Mar 1;50:221-8. doi: 10.1016/j.watres.2013.11.046. Epub 2013 Dec 7.
Easy identification of chemical signatures characteristic of water systems has become a major issue in the field of environmental protection and management. We propose an exploratory method, exclusively based on the statistical analysis of river water composition, capable of characterizing river waters in a given watershed through their chemical composition, as well as of detecting modifications, even when not related to pollution sources. Although the method is based on well-known statistic techniques (Principal Component Analysis and Linear Discriminant Analysis), and therefore is very simple and straightforward to apply, it goes far beyond the common data reduction use of these techniques. Its capabilities are illustrated through its application to rivers in Canton Geneva, Switzerland, a hydrographical network consisting of 310 km of waterways with 250 streams and rivers. The procedure results in a very satisfactory classification of watersheds, in our case by using only two geochemical indicators: U and Ba concentrations. The method also makes it possible to follow the seasonal evolution of river regimes or the effect of wetlands on river water composition.
易于识别具有水系特征的化学特征已成为环境保护和管理领域的一个主要问题。我们提出了一种探索性方法,该方法完全基于河流水组成的统计分析,能够通过其化学成分来表征给定流域中的河水,并且即使与污染源无关,也能够检测到变化。尽管该方法基于众所周知的统计技术(主成分分析和线性判别分析),因此非常简单且易于应用,但它远远超出了这些技术的常见数据简化用途。通过将其应用于瑞士日内瓦州的河流来说明其功能,该河流网络由 310 公里的水道和 250 条溪流和河流组成。该程序的结果是对流域进行了非常令人满意的分类,在我们的情况下,仅使用两个地球化学指标:U 和 Ba 浓度。该方法还可以跟踪河流水系的季节性演变或湿地对河流水组成的影响。