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Isotopic signals of summer denitrification in a northern hardwood forested catchment

机译:北部硬木林区集水区夏季反硝化的同位素信号

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摘要

Despite decades of measurements, the nitrogen balance of temperate forest catchments remains poorly understood. Atmospheric nitrogen deposition often greatly exceeds streamwater nitrogen losses; the fate of the remaining nitrogen is highly uncertain. Gaseous losses of nitrogen to denitrification are especially poorly documented and are often ignored. Here, we provide isotopic evidence (δ15NNO3 and δ18ONO3) from shallow groundwater at the Hubbard Brook Experimental Forest indicating extensive denitrification during midsummer, when transient, perched patches of saturation developed in hillslopes, with poor hydrological connectivity to the stream, while streamwater showed no isotopic evidence of denitrification. During small rain events, precipitation directly contributed up to 34% of streamwater nitrate, which was otherwise produced by nitrification. Together, these measurements reveal the importance of denitrification in hydrologically disconnected patches of shallow groundwater during midsummer as largely overlooked control points for nitrogen loss from temperate forest catchments.
机译:尽管进行了数十年的测量,对温带森林集水区的氮平衡仍然知之甚少。大气中的氮沉积通常会大大超过流水中的氮损失;剩余氮的命运非常不确定。氮在反硝化过程中的气态损失特别缺乏记录,通常被忽略。在这里,我们提供了哈伯德布鲁克实验林浅层地下水的同位素证据(δ 15 NNO3和δ 18 ONO3),表明仲夏期间,当短暂的栖息斑块出现大量反硝化作用时,斜坡形成饱和状态,与河流的水文连通性较差,而河流水没有显示出反硝化的同位素证据。在小雨事件中,降水直接贡献了高达34%的溪水硝酸盐,而硝酸盐则通过硝化作用产生。总之,这些测量结果揭示了仲夏期间在水文不连贯的浅层地下水中进行反硝化的重要性,因为在很大程度上忽略了温带森林集水区氮损失的控制点。

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