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Classifying the Health of Connecticut Streams Using Benthic Macroinvertebrates with Implications for Water Management

机译:使用底栖大型无脊椎动物对康涅狄格河的健康进行分类,对水管理有一定意义

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摘要

Bioassessments have formed the foundation of many water quality monitoring programs throughout the United States. Like many state water quality programs, Connecticut has developed a relational database containing information about species richness, species composition, relative abundance, and feeding relationships among macroinvertebrates present in stream and river systems. Geographic Information Systems can provide estimates of landscape condition and watershed characteristics and when combined with measurements of stream biology, provide a useful visual display of information that is useful in a management context. The objective of our study was to estimate the stream health for all wadeable stream kilometers in Connecticut using a combination of macroin-vertebrate metrics and landscape variables. We developed and evaluated models using an information theoretic approach to predict stream health as measured by macro-invertebrate multimetric index (MMI) and identified the best fitting model as a three variable model, including percent impervious land cover, a wetlands metric, and catchment slope that best fit the MMI scores (adj-R2 = 0.56, SE = 11.73). We then provide examples of how modeling can augment existing programs to support water management policies under the Federal Clean Water Act such as stream assessments and anti-degradation.
机译:生物评估已成为全美国许多水质监测计划的基础。像许多州的水质计划一样,康涅狄格州建立了一个关系数据库,其中包含有关河流和河流系统中的大型无脊椎动物之间的物种丰富度,物种组成,相对丰度以及觅食关系的信息。地理信息系统可以提供景观状况和流域特征的估计,并与流生物学的测量结果结合使用时,可以提供有用的可视化信息显示,这些信息在管理环境中很有用。我们研究的目的是结合使用大型蛋白脊椎动物指标和景观变量来估算康涅狄格州所有可步行溪流的河流健康状况。我们使用信息理论方法开发和评估了模型,以预测通过宏观无脊椎动物多指标指数(MMI)衡量的河流健康状况,并确定了最佳拟合模型为三变量模型,包括不透水土地覆盖率,湿地度量和集水坡度最适合MMI得分(adj-R2 = 0.56,SE = 11.73)。然后,我们提供示例,说明如何建模可以扩展现有程序以支持《联邦清洁水法》下的水管理政策,例如水流评估和反降解。

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