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Seasonal hydrology drives rapid shifts in the flux and composition of dissolved and particulate organic carbon and major and trace ions in the Fraser River, Canada

机译:季节性水文学推动了加拿大弗雷泽河中溶解有机碳和颗粒有机碳以及主要离子和痕量离子的通量和组成的快速变化

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pstrongAbstract./strong Rapid changes in the volume and sources of discharge during the spring freshet lead to pronounced variations in biogeochemical properties in snowmelt-dominated river basins. We used daily sampling during the onset of the freshet in the Fraser River (southwestern Canada) in 2013 to identify rapid changes in the flux and composition of dissolved material, with a focus on dissolved organic matter (DOM). Previous time series sampling (at twice monthly frequency) of dissolved inorganic species in the Fraser River has revealed smooth seasonal transitions in concentrations of major ions and tracers of water and dissolved load sources between freshet and base flow periods. In contrast, daily sampling reveals a significant increase in dissolved organic carbon (DOC) concentration (200 to 550 ??mol Lsup−1/sup) occurring over a matter of days, accompanied by a shift in DOM optical properties, indicating a transition towards higher molecular weight, more aromatic DOM composition. Comparable changes in DOM composition, but not concentration, occur at other times of year, underscoring the role of seasonal climatology in DOM cycling. A smaller data set of total and dissolved Hg concentrations also showed variability during the spring freshet period, although dissolved Hg dynamics appear to be driven by factors beyond DOM as characterized here. The time series records of DOC and particulate organic carbon (POC) concentrations indicate that the Fraser River exports 0.25a??0.35 % of its annual basin net primary productivity. The snowmelt-dominated hydrology, forested land cover, and minimal reservoir impoundment of the Fraser River may influence the DOC yield of the basin, which is high relative to the nearby Columbia River and of similar magnitude to that of the Yukon River to the north. Anticipated warming and decreased snowfall due to climate changes in the region may cause an overall decrease in DOM flux from the Fraser River to the coastal ocean in coming decades/p.
机译:> >摘要。春季新生期间排放量和排放源的快速变化导致以融雪为主的流域生物地球化学性质发生明显变化。我们于2013年在弗雷泽河(加拿大西南部)新生期间开始使用每日采样来确定溶解物质通量和成分的快速变化,重点是溶解有机物(DOM)。以前在弗雷泽河中的溶解性无机物进行的时间序列采样(每月两次)显示,在淡水期和基流期之间,水中主要离子和示踪剂以及溶解负荷源的浓度出现了平稳的季节性过渡。相比之下,每日采样显示几天内发生的溶解有机碳(DOC)浓度显着增加(200至550 mol L &min ;; 1 ),同时DOM光发生了变化。性质,表明向更高分子量,更芳香的DOM组成的过渡。在一年中的其他时间,DOM组成发生了可比的变化,但没有发生变化,这突出了季节性气候在DOM循环中的作用。较小的总汞和固溶汞浓度数据集在春季新生期也显示出变化性,尽管此处表征的固溶汞动态似乎是由DOM以外的因素驱动的。 DOC和颗粒有机碳(POC)浓度的时间序列记录表明,弗雷泽河的年流域净初级生产力为0.25a?0.35%。弗雷泽河以融雪为主的水文学,林地覆盖和最小的蓄水库蓄水量可能会影响该盆地的DOC产量,该产量相对于附近的哥伦比亚河而言较高,与北部的育空河相近。在未来几十年中,由于该地区气候变化而导致的预期变暖和降雪量可能导致从弗雷泽河到沿海海洋的DOM通量总体下降

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