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Unexpected large evasion fluxes of carbon dioxide from turbulent streams draining the world’s mountains

机译:来自流向世界高山的湍流意外的大逃逸二氧化碳通量

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摘要

Inland waters, including streams and rivers, are active components of the global carbon cycle. Despite the large areal extent of the world’s mountains, the role of mountain streams for global carbon fluxes remains elusive. Using recent insights from gas exchange in turbulent streams, we found that areal CO2 evasion fluxes from mountain streams equal or exceed those reported from tropical and boreal streams, typically regarded as hotspots of aquatic carbon fluxes. At the regional scale of the Swiss Alps, we present evidence that emitted CO2 derives from lithogenic and biogenic sources within the catchment and delivered by the groundwater to the streams. At a global scale, we estimate the CO2 evasion from mountain streams to 167 ± 1.5 Tg C yr−1, which is high given their relatively low areal contribution to the global stream and river networks. Our findings shed new light on mountain streams for global carbon fluxes.
机译:包括河流和河流在内的内陆水域是全球碳循环的活跃组成部分。尽管世界上的山脉面积很大,但山脉流对全球碳通量的作用仍然难以捉摸。利用湍流中气体交换的最新见解,我们发现山区河流的面层CO2逃逸通量等于或超过热带和北方河流中报告的规避通量,通常被视为水生碳通量的热点。在瑞士阿尔卑斯山的区域范围内,我们提供的证据表明,所排放的二氧化碳来自流域内的岩性和生物源,并被地下水输送到河流中。在全球范围内,我们估计山间溪流的二氧化碳排放量达到167±1.5 Tg C yr -1 ,鉴于它们对全球溪流和河网的面积贡献相对较低,因此这一数字很高。我们的发现为全球碳通量的山区溪流提供了新的思路。

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