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首页> 外文期刊>Biogeosciences >Importance of within-lake processes in affecting the dynamics of dissolved organic carbon and dissolved organic and inorganic nitrogen in an Adirondack forested lake/watershed
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Importance of within-lake processes in affecting the dynamics of dissolved organic carbon and dissolved organic and inorganic nitrogen in an Adirondack forested lake/watershed

机译:湖内过程对影响阿迪朗达克森林湖泊/流域中溶解有机碳以及溶解有机和无机氮动力学的重要性

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Lakes nested in forested watersheds play an important role in mediating the concentrations and fluxes of dissolved organic matter. We compared long-term patterns of concentrations and fluxes of dissolved organic carbon (DOC) and dissolved organic (DON) and inorganic nitrogen (DIN) in aquatic ecosystems of the Arbutus Lake watershed to evaluate how a lake nested in a forested watershed affects the sources (e.g., production) and sinks (e.g., retention) of DOC and DON in the Adirondack Mountains of New York, USA. We observed no significant long-term changes of DOC and DON in the lake outlet since 1983 and 1994, respectively. However, the temporal patterns of DOC and DON concentrations in the lake inlet showed significant seasonality such as increases during the vegetation growing season along with notable decreases in the dormant season. A comparison of mass balances between inlet and outlet for the period from 2000 to 2009 suggested that the lake was a sink of DOC (mean of influx minus out flux: +1140 mol C ha(-1) yr(-1)). In contrast, the difference of discharge-weighted DON concentrations (mean of inlet minus outlet: 1.0 mu mol N L-1) between inlet and outlet was much smaller than the discharge-weighted DOC concentrations (average of inlet minus outlet: + 87 mu mol C L-1). DON fluxes showed considerable variation among years (mean of influx minus outflux: +8 mol N ha(-1) yr(-1); range of differences: -15 to 27 mol N ha(-1) yr(-1)). DON exhibited low percent retention ((influx-outflux)/influx) (mean: 6.9 %, range: 34.8 to +31.2) compared to DOC (mean: 30.1 %, range: +9.2 to +44.1). The resultant increase of DON within the lake was closely linked with a net decrease of DIN through monthly Pearson correlation analysis, suggesting the importance of biotic factors in mediating lake DON dynamics Our results show different relative retentions of DOC compared with DON, along with a larger retention of DIN than DON, suggesting that DOC and DON might display substantially different biogeochemical relationships in oligo-mesotrophic lakes nested forested watersheds and therefore different roles for a sink behavior for DOC compared to a producer of DON.
机译:嵌套在森林流域中的湖泊在调节溶解有机物的浓度和通量方面起着重要作用。我们比较了Arbutus湖流域水生生态系统中溶解有机碳(DOC),溶解有机物(DON)和无机氮(DIN)的浓度和通量的长期模式,以评估筑巢在森林流域中的湖泊如何影响源(例如生产)和DOC和DON的汇(例如保留)在美国纽约的阿迪朗达克山脉中。自1983年和1994年以来,我们未观察到湖泊出口处DOC和DON的长期变化。然而,湖泊入口处DOC和DON浓度的时间模式表现出明显的季节性,例如在植被生长季节增加,而在休眠季节则明显减少。比较2000年至2009年期间入口和出口之间的质量平衡,表明该湖是DOC的汇(流入量减去流出量的平均值:+1140 mol C ha(-1)yr(-1))。相反,进出口之间的排放加权DON浓度(入口减去出口的平均值:1.0μmolN L-1)之差比排放加权DOC浓度(入口减去出口的平均值:+ 87 mu)小得多。 mol C L-1)。 DON通量显示出多年间的显着变化(流入量减去流出量的平均值:+8 mol N ha(-1)yr(-1);差异范围:-15至27 mol N ha(-1)yr(-1)) 。与DOC相比,DON的保留率低((流入-流出)/流入)(平均值:6.9%,范围:34.8至+31.2)(平均值:30.1%,范围:+9.2至+44.1)。通过每月的Pearson相关分析,湖泊中DON的增加与DIN的净减少密切相关,这表明生物因子在介导湖泊DON动态中的重要性。我们的结果表明,与DON相比,DOC的相对保留量有所不同,并且更大。 DIN的保留比DON保留,这表明DOC和DON在巢湖森林小流域的中食营养型湖泊中可能表现出显着不同的生物地球化学关系,因此与DON的生产者相比,DOC的下沉行为具有不同的作用。

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