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Mapping watershed integrity for the conterminous United States

机译:为美国本土绘制流域完整性图

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摘要

Watershed integrity is the capacity of a watershed to support and maintain the full range of ecological processes and functions essential to sustainability. Using information from EPA’s StreamCat dataset, we calculated and mapped an Index of Watershed Integrity (IWI) for 2.6 million watersheds in the conterminous US with first-order approximations of relationships between stressors and six watershed functions: hydrologic regulation, regulation of water chemistry, sediment regulation, hydrologic connectivity, temperature regulation, and habitat provision. Results show high integrity in the western US, intermediate integrity in the southern and eastern US, and the lowest integrity in the temperate plains and lower Mississippi Valley. Correlation between the six functional components was high (r = 0.85-0.98). A related Index of Catchment Integrity (ICI) was developed using local drainages of individual stream segments (i.e., excluding upstream information). We evaluated the ability of the IWI and ICI to predict six continuous site-level indicators with regression analyses – three biological indicators and principal components derived from water quality, habitat, and combined water quality and habitat variables – using data from EPA’s National Rivers and Streams Assessment. Relationships were highly significant, but the IWI only accounted for 1-12% of the variation in the four biological and habitat variables. The IWI accounted for over 25% of the variation in the water quality and combined principal components nationally, and 32-39% in the Northern and Southern Appalachians. We also used multinomial logistic regression to compare the IWI with the categorical forms of the three biological indicators. Results were consistent: we found positive associations but modest results. We compared how the IWI and ICI predicted the water quality PC relative to agricultural and urban land use. The IWI or ICI are the best predictors of the water quality PC for the CONUS and six of the nine ecoregions, but they only perform marginally better than agriculture in most instances. However, results suggest that agriculture would not be appropriate in all parts of the country, and the index is meant to be responsive to all stressors. The IWI in its present form (available through the StreamCat website; ) could be useful for management efforts at multiple scales, especially when combined with information on site condition. The IWI could be improved by incorporating empirical or literature-derived relationships between functional components and stressors. However, limitations concerning the absence of data for certain stressors should be considered.
机译:流域完整性是流域支持和维护可持续发展必不可少的全部生态过程和功能的能力。利用来自EPA StreamCat数据集的信息,我们计算并绘制了美国本土260万个集水区的集水区完整性指数(IWI),并与应力源和六个集水区功能之间的关系进行了一阶近似:水文法规,水化学法规,沉积物调节,水文连通性,温度调节和栖息地提供。结果表明,美国西部的完整性较高,美国南部和东部的中等完整性,而温带平原和密西西比河下游的完整性最低。六个功能组件之间的相关性很高(r = 0.85-0.98)。相关的集水区完整性指数(ICI)是使用单个河段的局部排水量开发的(即,不包括上游信息)。我们评估了IWI和ICI通过回归分析预测六个连续站点级指标的能力–三个生物学指标和主要成分,这些指标和主要成分来自水质,生境以及组合的水质和生境变量–使用来自EPA国家河流和溪流的数据评定。关系非常重要,但IWI仅占四个生物学和生境变量变化的1-12%。 IWI占全国水质变化和主要成分总和的25%以上,北部和南部阿巴拉契亚人占32-39%。我们还使用多项逻辑回归将IWI与三种生物学指标的分类形式进行了比较。结果是一致的:我们发现正相关,但结果不大。我们比较了IWI和ICI如何预测相对于农业和城市土地利用的水质PC。 IWI或ICI是CONUS和九个生态区域中六个区域水质PC的最佳预测指标,但在大多数情况下,它们的表现仅比农业略好。但是,结果表明,农业不适用于该国所有地区,该指数旨在应对所有压力源。当前形式的IWI(可通过StreamCat网站获得)可用于多种规模的管理工作,尤其是与现场条件信息结合使用时。通过在功能组件和压力源之间合并经验或文献衍生关系,可以改善IWI。但是,应考虑有关某些压力源缺乏数据的限制。

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