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Citizen science shows systematic changes in the temperature difference between air and inland waters with global warming

机译:公民科学表明,随着全球变暖,空气与内陆水温差的系统变化

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摘要

Citizen science projects have a long history in ecological studies. The research usefulness of such projects is dependent on applying simple and standardized methods. Here, we conducted a citizen science project that involved more than 3500 Swedish high school students to examine the temperature difference between surface water and the overlying air (Tw-Ta) as a proxy for sensible heat flux (QH). If QH is directed upward, corresponding to positive Tw-Ta, it can enhance CO2 and CH4 emissions from inland waters, thereby contributing to increased greenhouse gas concentrations in the atmosphere. The students found mostly negative Tw-Ta across small ponds, lakes, streams/rivers and the sea shore (i.e. downward QH), with Tw-Ta becoming increasingly negative with increasing Ta. Further examination of Tw-Ta using high-frequency temperature data from inland waters across the globe confirmed that Tw-Ta is linearly related to Ta. Using the longest available high-frequency temperature time series from Lake Erken, Sweden, we found a rapid increase in the occasions of negative Tw-Ta with increasing annual mean Ta since 1989. From these results, we can expect that ongoing and projected global warming will result in increasingly negative Tw-Ta, thereby reducing CO2 and CH4 transfer velocities from inland waters into the atmosphere.
机译:公民科学项目在生态学研究中具有悠久的历史。这些项目的研究有用性取决于应用简单和标准化的方法。在这里,我们开展了一项公民科学项目,涉及3500多名瑞典高中学生,研究了地表水和上层空气(Tw-Ta)之间的温差,以作为显热通量(QH)的替代指标。如果将QH向上定向(对应于Tw-Ta正值),它将增加内陆水域的CO2和CH4排放量,从而导致大气中温室气体浓度增加。学生发现在小池塘,湖泊,溪流/河流和海边(即向下QH)上的Tw-Ta大多为负,Tw-Ta随着Ta的增加而变得越来越负。使用来自全球内陆水域的高频温度数据对Tw-Ta进行进一步检查,证实Tw-Ta与Ta线性相关。使用来自瑞典埃尔肯湖的最长的高频温度时间序列,我们发现自1989年以来,负Tw-Ta的出现迅速增加,年平均Ta不断增加。从这些结果,我们可以预期正在进行的和预计的全球变暖会导致Tw-Ta越来越负,从而降低了CO2和CH4从内陆水域进入大气的速度。

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