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Exploring methods of measuring CO_2 degassing in headwater streams

机译:探索源头水流中CO_2脱气的方法

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Carbon dioxide (CO_2) degassed from ungauged, headwater streams has a significant role in carbon cycling and climate change, making the precise measurement of the degassing of critical importance. Although methods exist for quantifying degassing rates in large bodies of water (seawater, lakes), these methods are often considered invalid for measuring degassing rates in small, turbulent, groundwater fed headwater streams. This manuscript reviews the physics of gas transfer across the stream-atmosphere interface and provides an in-depth critical review of the available methods of measuring CO_2 degassing. Further, it discusses applications for some of these methods in small headwater streams and other low-order streams that are dominated by discharged groundwater. Of the methods reviewed, almost all produce fairly low precision and do not compare well with other methods tested in the same location. We suggest much more work is needed to improve the precision and accuracy of field-measured gas transfer coefficients, both by applying multiple methods in the field and by controlled laboratory experiments.
机译:从未开启的上游水流中脱气的二氧化碳(CO_2)在碳循环和气候变化中起着重要作用,因此精确测量脱气至关重要。尽管存在量化大型水域(海水,湖泊)中脱气率的方法,但这些方法通常被认为对测量小型湍流,地下水补给源头水流中的脱气率无效。该手稿回顾了跨流-气界面的气体传输物理原理,并对测量CO_2脱气的可用方法进行了深入的评论。此外,它讨论了这些方法中的一些方法在小型上游水流和其他以排放的地下水为主的低阶流中的应用。在所审查的方法中,几乎所有方法的精度都相当低,不能与在同一位置测试的其他方法相提并论。我们建议需要更多的工作来提高现场测量的气体传输系数的精度和准确性,方法是在现场应用多种方法并通过受控的实验室实验。

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