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Lakes as nitrous oxide sources in the boreal landscape

机译:湖泊湖水景观中的氧化物源

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Estimates of regional and global freshwater N2O emissions have remained inaccurate due to scarce data and complexity of the multiple processes driving N2O fluxes the focus predominantly being on summer time measurements from emission hot spots, agricultural streams. Here, we present four-season data of N2O concentrations in the water columns of randomly selected boreal lakes covering a large variation in latitude, lake type, area, depth, water chemistry, and land use cover. Nitrate was the key driver for N2O dynamics, explaining as much as 78% of the variation of the seasonal mean N2O concentrations across all lakes. Nitrate concentrations varied among seasons being highest in winter and lowest in summer. Of the surface water samples, 71% were oversaturated with N2O relative to the atmosphere. Largest oversaturation was measured in winter and lowest in summer stressing the importance to include full year N2O measurements in annual emission estimates. Including winter data resulted in fourfold annual N2O emission estimates compared to summer only measurements. Nutrient-rich calcareous and large humic lakes had the highest annual N2O emissions. Our emission estimates for Finnish and boreal lakes are 0.6 and 29 Gg N2O-N/year, respectively. The global warming potential of N2O from lakes cannot be neglected in the boreal landscape, being 35% of that of diffusive CH4 emission in Finnish lakes.
机译:由于缺乏驾驶N2O通量的多个进程的数据和复杂性,区域和全球淡水N2O排放的估计仍然是不准确的,这是驾驶N2O助势的焦点,主要是夏季时间从排放热点,农业溪流进行夏季时间测量。在这里,我们在随机选择的北方湖泊水柱中展示了N2O浓度的四季数据,涵盖了纬度,湖泊类型,面积,深度,水化学和土地利用盖的大变化。硝酸盐是N2O动态的关键驱动因素,解释了所有湖泊季节性平均N2O浓度的多达78%的变化。硝酸盐浓度在冬季最高和夏季最低的季节变化。在地表水样中,71%相对于大气,用N2O过饱和。在冬季测量最大的过饱和度,夏季最低,强调了在年度排放估算中包含全年N2O测量的重要性。包括冬季数据导致四倍的年度N2O发射估计与夏季仅测量相比。富含营养丰富的钙质和大型腐殖湖的年度N2O排放量最高。我们为芬兰和北湖泊的排放估计分别为0.6%和29 gg N2O-n /届。在北方景观中,N2O从湖泊的全球变暖潜力不能被忽视,其中35%的芬兰湖区扩散CH4排放量的35%。

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