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Changes in dissolved organic matter (DOM) amount and composition along nested headwater stream locations during baseflow and stormflow

机译:在基流和风暴流程期间,沿嵌套的沿嵌套的沿着嵌套的沿着嵌套的沿着嵌套的沿着嵌套的沿着嵌套的沿着嵌套的下流物流定位的变化

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Amount and composition of dissolved organic matter (DOM) were evaluated for multiple, nested stream locations in a forested watershed to investigate the role of hydrologic flow paths, wetlands and drainage scale. Sampling was performed over a 4-year period (2008-2011) for five locations with drainage areas of 0.62, 3.5, 4.5, 12 and 79ha. Hydrologic flow paths were characterized using an end-member mixing model. DOM composition was determined using a suite of spectrofluorometric indices and a site-specific parallel factor analysis model. Dissolved organic carbon (DOC), humic-like DOM and fluorescence index were most sensitive to changes with drainage scale, whereas dissolved organic nitrogen, specific UV absorbance, Sr and protein-like DOM were least sensitive. DOM concentrations and humic-like DOM constituents were highest during both baseflow and stormflow for a 3.5-ha catchment with a wetland near the catchment outlet. Whereas storm-event concentrations of DOC and humic DOM constituents declined, the mass exports of DOC increased with increasing catchment scale. A pronounced dilution in storm-event DOC concentration was observed at peak stream discharge for the 12-ha drainage location, which was not as apparent at the 79-ha scale, suggesting key differences in supply and transport of DOM. Our observations indicate that hydrologic flow paths, especially during storms, and the location and extent of wetlands in the catchment are key determinants of DOM concentration and composition. This study furthers our understanding of changes in DOM with drainage scale and the controls on DOM in headwater, forested catchments. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:评价溶解有机物质(DOM)的数量和组成,用于森林流域中的多个嵌套物流位置,以研究水文流动路径,湿地和排水量表的作用。在4年期(2008-2011)上进行抽样,其中五个地点,排水区为0.62,3.5,4.5,12和79Ha。使用末端构件混合模型表征了水文流动路径。使用套件的光谱荧光指数和站点特定的并行因子分析模型确定DOM组成。溶解的有机碳(DOC),腐殖质的DOM和荧光指数对引流尺度的变化最敏感,而溶解的有机氮,特异性UV吸光度,Sr和蛋白质样Dom是最小敏感性的。在碱气和风暴流程中,3.5公顷的湿地的浓度和腐殖质的Dom成分在集水区附近的湿地。虽然DOC和腐殖质DOM成分的暴风事件浓度下降,但DOC的大规模出口随着集水量的增加而增加。在12-HA排水位置的峰值流放电时观察到风暴事件DOC浓度的显着稀释,这在79-HA规模上并不明显,表明DOM供应和运输的关键差异。我们的观察表明,水文流动路径,特别是在风暴期间,集水区中湿地的位置和程度是DOM浓度和组成的关键决定因素。本研究传统我们对DOM的变化,带排水量表和地图中DOM的控制,森林集水区。版权所有(c)2014 John Wiley&Sons,Ltd。

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