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Hydrology controls dissolved organic matter export and composition in an Alpine stream and its hyporheic zone

机译:水文控制高山流及其水溶带中溶解有机物的出口和组成

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摘要

Streams and rivers transport dissolved organic matter (DOM) from the terrestrial environment to downstream ecosystems. In light of climate and global change it is crucial to understand the temporal dynamics of DOM concentration and composition, and its export fluxes from headwaters to larger downstream ecosystems. We monitored DOM concentration and composition based on a diurnal sampling design for 3 years in an Alpine headwater stream. We found hydrologic variability to control DOM composition and the coupling of DOM dynamics in the streamwater and the hyporheic zone. High‐flow events increased DOM inputs from terrestrial sources (as indicated by the contributions of humic‐ and fulvic‐like fluorescence), while summer baseflow enhanced the autochthonous imprint of DOM. Diurnal and seasonal patterns of DOM composition were likely induced by biological processes linked to temperature and photosynthetic active radiation (PAR). Floods frequently interrupted diurnal and seasonal patterns of DOM, which led to a decoupling of streamwater and hyporheic water DOM composition and delivery of aromatic and humic‐like DOM to the streamwater. Accordingly, DOM export fluxes were largely of terrigenous origin as indicated by optical properties. Our study highlights the relevance of hydrologic and seasonal dynamics for the origin, composition and fluxes of DOM in an Alpine headwater stream.
机译:溪流将溶解的有机物(DOM)从陆地环境运输到下游生态系统。鉴于气候和全球变化,了解DOM浓度和组成的时间动态及其从上游源头到较大下游生态系统的出口通量至关重要。我们根据每日取样设计在高山源水流中监测DOM的浓度和组成,为期3年。我们发现了水文变异性来控制DOM的组成以及河流和水流带中DOM动力学的耦合。高流量事件增加了来自陆源的DOM输入(如腐殖质和黄腐荧光的贡献所表明的),而夏季基流增强了DOM的自然印记。 DOM组成的昼夜模式可能是由与温度和光合有效辐射(PAR)有关的生物过程引起的。洪水经常中断DOM的昼夜模式和季节性模式,从而导致溪流水和低渗水DOM成分分离,并向河水中输送芳香和腐殖质DOM。因此,如光学性质所示,DOM出口通量主要来自陆源。我们的研究强调了水文和季节动态与高山源流中DOM的来源,组成和通量的相关性。

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