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Distinct air-water gas exchange regimes in low- and high-energy streams

机译:低能量流中的明显的空气水燃气交换制度

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摘要

Gas exchange across the air-water interface drives the flux of climate-relevant gases and is critical for biogeochemical processes in aquatic ecosystems. Despite the presence of mountain streams worldwide, we lack basic understanding of gas exchange through their turbulent surfaces, making global estimates of outgassing from streams and rivers difficult to constrain. Here we combine new estimates of gas transfer velocities from tracer gas additions in mountain streams with published data to cover streams differing in geomorphology and hydraulics. We find two different scaling relationships between the turbulence-induced energy dissipation rate and gas transfer velocity for low- and high-channel slope streams, indicating that gas exchange in streams exists in two states. We suggest that turbulent diffusion drives gas transfer velocity in low-energy streams; whereas turbulence entrains air bubbles in high-energy streams, and the resulting bubble-mediated gas exchange accelerates with energy dissipation rate. Gas transfer velocities in the high-energy streams are among the highest reported. Our findings offer a framework to include mountain streams in future estimates of gas fluxes from streams and rivers at the global scale.
机译:空气水界面的气体交换驱动了气候相关气体的磁通,对水生生态系统中的生物地球化学过程至关重要。尽管存在全球山区溪流,但我们通过动荡的表面缺乏对气体交换的基本理解,使全球对溪流和河流难以约束的全球估计。在这里,我们将在山溪流中的示踪气体添加速度与发布的数据相结合,以覆盖在地貌和液压系统不同的流。我们在湍流诱导的低通道斜坡流的湍流诱导的能量耗散速率和气体传递速度之间发现了两个不同的缩放关系,表明两种状态存在流中的气体交换。我们建议湍流扩散驱动低能量流中的气体传递速度;而湍流纳入高能流中的气泡,并且所得到的气泡介导的气体交换加速能量耗散速率。高能量流中的气体传递速度是最高报道的。我们的调查结果提供了一个框架,包括在全球范围内的溪流和河流的未来储气额估算中包含山地溪流。

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  • 来源
    《Nature geoscience》 |2019年第4期|共6页
  • 作者单位

    Ecole Polytech Fed Lausanne Sch Architecture Civil &

    Environm Engn Stream Biofilm &

    Ecosyst Res Lab Lausanne Switzerland;

    Univ Montana Flathead Lake Biol Stn Polson MT 59860 USA;

    Ecole Polytech Fed Lausanne Sch Architecture Civil &

    Environm Engn Stream Biofilm &

    Ecosyst Res Lab Lausanne Switzerland;

    Univ Wyoming Program Ecol Laramie WY 82071 USA;

    Ecole Polytech Fed Lausanne Sch Architecture Civil &

    Environm Engn Stream Biofilm &

    Ecosyst Res Lab Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Sch Architecture Civil &

    Environm Engn Stream Biofilm &

    Ecosyst Res Lab Lausanne Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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