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Sediment respiration drives circulation and production of CO2 in ice‐covered Alaskan arctic lakes

机译:沉积物的呼吸推动冰雪覆盖的阿拉斯加北极湖的循环和二氧化碳的产生

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The goals of our study were to (1) quantify production of CO2 during winter ice‐cover in arctic lakes, (2) develop methodologies which would enable prediction of CO2 production from readily measured variables, and (3) improve understanding of under‐ice circulation as it influences the distribution of dissolved gases under the ice. To that end, we combined in situ measurements with profile data. CO2 production averaged 20 mg C m?2 d?1 in a 3 m deep lake and ~ 45 mg C m?2 d?1 in four larger lakes, similar to experimental observations at temperatures below 4°C. CO2 production was predicted by the initial rate of loss of oxygen near the sediments at ice‐on and by the full water column loss of oxygen throughout the winter. The time series data also showed the lake‐size and time dependent contribution of sediment respiration to under‐ice circulation and the decreased near‐bottom flows enabling anoxia and CH4 accumulation.
机译:我们的研究目标是(1)量化北极湖泊冬季冰盖期间的CO2产生;(2)开发能够从易于测量的变量预测CO2产生的方法;(3)增进对冰层下的了解循环,因为它影响冰下溶解气体的分布。为此,我们将原位测量与轮廓数据结合在一起。在一个3 m深的湖泊中,CO2的平均产量为20 mg C m?2 d?1,在四个更大的湖泊中,平均为〜45 mg C m?2 d?1,这与在4°C以下的温度下的实验观察结果相似。通过冰上沉积物附近的氧气初始损失速率以及整个冬季整个水柱中的氧气损失来预测二氧化碳的产生。时间序列数据还显示了沉积物呼吸对冰下循环的湖泊大小和时间依赖性,近底部水流减少导致缺氧和CH4积累。

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