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Measuring the biosphere-atmosphere exchange of total reactive nitrogen by eddy covariance

机译:通过涡度协方差测量生物圈-大气中总活性氮的交换

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The (net) exchange of reactive nitrogen (Nr) with the atmosphere is an important driver for ecosystem productivity and greenhouse gas exchange. The exchange of airborne Nr includes various trace compounds that usually require different specific measurement techniques, and up to now fast response instruments suitable for eddy covariance measurements are only available for few of these compounds. Here we present eddy covariance flux measurements with a recently introduced converter (TRANC) for the sum of all Nr compounds (σN _r). Measurements were performed over a managed grassland field with phases of net emission and net deposition of σN _r and alternating dominance of oxidized (NOX) and reduced species (NH3). Spectral analysis of the eddy covariance data exhibited the existence of covariance function peaks at a reasonable time lag related to the sampling tube residence time under stationary conditions. Using ogive analysis, the high-frequency damping was quantified to 19%-26% for a low measurement height of 1.2 m and to about 10% for 4.8 m measurement height. σN _r concentrations and fluxes were compared to parallel NO and NO _2 measurements by dynamic chambers and NH _3 measurements by the aerodynamic gradient technique. The average concentration results indicate that the main compounds NO _2 and NH _3 were converted by the TRANC system with an efficiency of near 100%. With an optimised sample inlet also the fluxes of these compounds were recovered reasonably well including net deposition and net emission phases. The study shows that the TRANC system is suitable for fast response measurements of oxidized and reduced nitrogen compounds and can be used for continuous eddy covariance flux measurements of total reactive nitrogen.
机译:活性氮(Nr)与大气的(净)交换是生态系统生产力和温室气体交换的重要驱动力。空气中Nr的交换包括各种痕量化合物,这些化合物通常需要使用不同的特定测量技术,并且到目前为止,仅适用于涡流协方差测量的快速响应仪器仅适用于其中的几种化合物。在这里,我们介绍了使用最近推出的转换器(TRANC)对所有Nr化合物之和(σN_r)进行涡流协方差通量测量。在有管理的草地上进行测量,测量的阶段分别为净排放量和净沉积量σN_r,以及交替出现的氧化态(NOX)和还原态物种(NH3)优势。涡度协方差数据的频谱分析显示,在固定条件下,与采样管停留时间相关的合理时间滞后存在协方差函数峰。使用ogive分析,对于1.2 m的低测量高度,高频阻尼被量化为19%-26%,而对于4.8m的测量高度,高频阻尼被量化为约10%。将σN_r浓度和通量与通过动态室进行的平行NO和NO _2测量以及通过空气动力学梯度技术进行的NH _3测量进行比较。平均浓度结果表明,主要化合物NO _2和NH _3被TRANC系统转化,效率接近100%。通过优化的进样口,这些化合物的通量也得到了合理的回收,包括净沉积和净发射相。研究表明,TRANC系统适用于氧化和还原氮化合物的快速响应测量,并可用于总活性氮的连续涡流协方差通量测量。

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