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首页> 外文期刊>Journal of the American Water Resources Association >REGION, LANDSCAPE, AND SCALE EFFECTS ON LAKE SUPERIOR TRIBUTARY WATER QUALITY
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REGION, LANDSCAPE, AND SCALE EFFECTS ON LAKE SUPERIOR TRIBUTARY WATER QUALITY

机译:区域,景观和规模对湖上优质微生物水质量的影响

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In 1998 and1999, third-order watersheds in high mature forest (HMF) and low mature forest (LMF) classes were selected along gradients of watershed storage within each of two hydrogeomorphic regions in the Lake Superior Basin to evaluate threshold effects of storage on hydrologic regimes and watershed exports. Differences were detected between regions (North and South Shore) for particulates, nutrients, and pH, with all but silica values higher for South Shore streams (p < 0.05). Mature forest effects were detected for turbidity, nutrients, color, and alkalinity, with higher values in the LMF watersheds, that is, watersheds with less that 50 percent mature forest cover. Dissolved N, ammonium, N:P, organic carbon, and color increased, while suspended solids, turbidity, and dissolved P decreased as a function of storage. Few two-way interactions were detected between region and mature forest or watershed storage, thus threshold based classification schemes could be used to extrapolate effects across regions. Both regional differences in water quality and those associated with watershed attributes were more common for third-order streams in the western Lake Superior drainage basin as compared with second-order streams examined in an earlier study. Use of ecoregions alone as a basis for setting regional water quality criteria would have led to misinterpretation of reference condition and assessment of impacts in the Northern Lakes and Forest Ecoregion.
机译:在1998年和1999年,沿着苏必利尔湖盆地两个水文地貌区域中每个分水岭的储水坡度,选择了高成熟林(HMF)和低成熟林(LMF)类的三阶分水岭,以评估储水对水文状况的阈值影响和分水岭出口。在区域(北岸和南岸)之间检测到了颗粒,养分和pH值的差异,但南岸溪流中除二氧化硅以外的所有值都更高(p <0.05)。在LMF流域(即成熟林覆盖率不到50%的流域)中,检测到成熟森林效应的浊度,养分,颜色和碱度较高。溶解态氮,铵,氮磷钾,有机碳和颜色增加,而悬浮固体,浊度和溶解态磷则随储能而降低。在区域与成熟森林或流域存储之间几乎没有双向交互作用,因此基于阈值的分类方案可用于推断区域间的影响。与早期研究中研究的二阶水流相比,苏必利尔湖西部流域的三阶水流的水质区域差异和与流域属性有关的差异更为普遍。仅将生态区作为制定区域水质标准的基础,将导致对参考条件的误解以及对北部湖泊和森林生态区的影响的评估。

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