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首页> 外文期刊>Wetlands >Influence of Bedrock Geology on Water Chemistry of Slope Wetlands and Headwater Streams in the Southern Rocky Mountains
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Influence of Bedrock Geology on Water Chemistry of Slope Wetlands and Headwater Streams in the Southern Rocky Mountains

机译:基岩地质对南部落基山脉坡面湿地和水源流水化学的影响

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摘要

We characterized the water chemistry of nine slope wetlands and adjacent headwater streams in Colorado subalpine forests and compared sites in basins formed on crystalline bedrock with those formed in basins with a mixture of crystalline and sedimentary bedrock. The pH, Ca~(2+), Mg~(2+), NH4~+, acid neutralizing capacity, and electrical conductivity of wetland porewater and streamwater were higher in the basins with mixed geology. Bryophyte cover was higher in lower pH, crystalline basins, and vascular plant cover was higher in the mixed bedrock basins. On average, wetland porewater had lower pH and higher concentrations of dissolved organic carbon (DOC) and nitrogen and several other ions than streamwater; however, because discharge from these small wetlands is low, their direct influence on stream solute concentrations was generally undetectable. Dilution altered stream solute concentrations during peak flow in both basin types, but had little effect on wetland chemistry. In contrast to other solutes, the concentration of DOC in streams increased marginally during peak runoff and its concentration in wetland porewater was stable throughout the year. These findings further knowledge of the influence of watershed characteristics on wetland and stream chemistry and will inform future decisions regarding conservation and management in headwater basins.
机译:我们表征了科罗拉多亚高山森林中九个斜坡湿地和邻近源水流的水化学性质,并比较了在结晶基岩上形成的盆地中的位置和在结晶基岩和沉积基岩混合物中形成的盆地中的位置。在混合地质盆地中,pH,Ca〜(2 +),Mg〜(2 +),NH4〜+,酸中和能力以及湿地孔隙水和流水的电导率较高。在较低的pH值,结晶盆地中,苔藓植物覆盖率较高,在混合基岩盆地中,维管束植物覆盖率较高。平均而言,湿地孔隙水的pH值较低,溶解有机碳(DOC)和氮及其他几种离子的浓度高于溪流。但是,由于这些小湿地的排放量较低,因此通常无法检测到它们对河流溶质浓度的直接影响。在两种流域的峰值流量期间,稀释都会改变河流中的溶质浓度,但对湿地化学影响很小。与其他溶质相反,在高峰径流期间,溪流中的DOC浓度略有增加,全年湿地孔隙水中的DOC浓度保持稳定。这些发现进一步了解了流域特征对湿地和河流化学的影响,并将为有关上游水源流域的保护和管理的未来决策提供依据。

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