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首页> 外文期刊>Global change biology >Aquatic carbon fluxes dampen the overall variation of net ecosystem productivity in the Amazon basin: An analysis of the interannual variability in the boundless carbon cycle
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Aquatic carbon fluxes dampen the overall variation of net ecosystem productivity in the Amazon basin: An analysis of the interannual variability in the boundless carbon cycle

机译:水生碳通量抑制了亚马逊盆地净生态系统生产率的整体变化:无边无际碳循环中的续变性分析

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The river-floodplain network plays an important role in the carbon (C) cycle of the Amazon basin, as it transports and processes a significant fraction of the C fixed by terrestrial vegetation, most of which evades as CO2 from rivers and floodplains back to the atmosphere. There is empirical evidence that exceptionally dry or wet years have an impact on the net C balance in the Amazon. While seasonal and interannual variations in hydrology have a direct impact on the amounts of C transferred through the river-floodplain system, it is not known how far the variation of these fluxes affects the overall Amazon C balance. Here, we introduce a new wetland forcing file for the ORCHILEAK model, which improves the representation of floodplain dynamics and allows us to closely reproduce data-driven estimates of net C exports through the river-floodplain network. Based on this new wetland forcing and two climate forcing datasets, we show that across the Amazon, the percentage of net primary productivity lost to the river-floodplain system is highly variable at the interannual timescale, and wet years fuel aquatic CO2 evasion. However, at the same time overall net ecosystem productivity (NEP) and C sequestration are highest during wet years, partly due to reduced decomposition rates in water-logged floodplain soils. It is years with the lowest discharge and floodplain inundation, often associated with El Nino events, that have the lowest NEP and the highest total (terrestrial plus aquatic) CO2 emissions back to atmosphere. Furthermore, we find that aquatic C fluxes display greater variation than terrestrial C fluxes, and that this variation significantly dampens the interannual variability in NEP of the Amazon basin. These results call for a more integrative view of the C fluxes through the vegetation-soil-river-floodplain continuum, which directly places aquatic C fluxes into the overall C budget of the Amazon basin.
机译:河流 - 洪泛区网络在亚马逊盆地的碳(C)周期中起着重要作用,因为它运输和处理陆地植被固定的C的大部分,其中大部分是从河流和洪水平台回到的二氧化碳大气层。有实证证据表明,异常干燥或潮湿的年度对亚马逊的净C平衡产生影响。虽然水文中的季节性和续际变化对通过河流 - 洪泛体系转移的C的数量有直接影响,但尚不清楚这些助焊剂的变化影响整体亚马逊C平衡的距离。在这里,我们向乐队模型介绍了一个新的湿地强迫文件,这改善了洪泛区动态的代表,并允许我们通过河洪泛网络进行密切地重现Net C导出的数据驱动估计。基于这一新的湿地强迫和两个气候迫使数据集,我们展示了亚马逊,河洪泛体系损失的净初级生产率的百分比在际时间尺度和潮湿的燃料水生二氧化碳二氧化碳中具有高度变化。然而,在潮湿年期间,同时,总体净生态系统生产力(NEP)和C封存在潮湿年内是最高的,部分原因是水路泛洪平壤中的分解率降低。这是迄今为止最低的排放和洪泛区的洪水,通常与El Nino事件相关,具有最低的NEP和最高的总数(地面加水生)二氧化碳排放回到大气中。此外,我们发现水生C通量显示比地面C助焊剂更大的变化,并且这种变化显着地抑制了亚马逊盆地尼布的续航变异性。这些结果呼吁通过植被 - 土河 - 洪泛平原连续体进行更加综合的C助焊剂,它直接将水生C通量放入亚马逊盆地的总体C预算中。

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