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Measurements of N2O fluxes from Fertilized Grassland using a fast response tunable diode laser spectrometer

机译:使用快速响应可调二极管激光光谱仪测量施肥草地的N2O通量

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摘要

A fast response tunable diode laser spectrometer was used to make N2O flux measurements by both eddy correlation and concentration gradient techniques during a methods intercomparison field program in April 1992 at a site in Stirling, Scotland. A description of the site and the results of the intercomparison are presented in companion papers. Sufficient instrumental precision and time resolution for N2O flux determination using both techniques were obtained by application of the recently developed two-tone frequency modulation coupled with fast scanning of the laser. The use of a dedicated digital signal processor allowed zero-overhead on-line data handling at a rate of 10 Hz such that the time response of the system was only limited by the gas exchange time in the multipass sample cell (200 ms). Vertical concentration gradients that lead to a difference of ≤ 1 part per billion by volume in the N2O mixing ratio at 0.06- and 1.05-m elevation were statistically resolved within 1 min. Eddy correlation measurements with intake heights of 2.25 m and 2.75 m were made in conjunction with two different sonic anemometers. The software developed for reduction and analysis of the 10-Hz eddy correlation data was based on time efficient FFT methods and performed time-base matching of the data set, drift correction, coordinate rotation, and evaluation of the covariances and the frequency power distributions. N2O fluxes determined with this technique were in the range of 38–113 ng N m−2 s−1. An unusual shape of the N2O concentration covariance function can be ascribed to fetch inhomogeneities, and we conclude that the eddy correlation data set contains information that can be used to characterize the spatial variability in N2O emission in addition to its spatial integral.
机译:在1992年4月于苏格兰斯特灵的一个方法比对现场项目中,使用快速响应可调二极管激光光谱仪通过涡流相关和浓度梯度技术进行N2O通量测量。配套文件中介绍了该地点,并进行了比较。通过使用最近开发的两音调频技术和激光快速扫描技术,可以获得使用这两种技术确定N2O通量的足够的仪器精度和时间分辨率。专用数字信号处理器的使用允许以10 Hz的速率进行零开销的在线数据处理,从而使系统的时间响应仅受多通道样品池中的气体交换时间(200 ms)限制。可以在1分钟内从统计学上解决导致0.02和1.05-m高度的N2O混合比差异≤十亿分之十的垂直浓度梯度。结合两个不同的声波风速计,对进气高度为2.25 m和2.75 m的涡流相关性进行了测量。为减少和分析10 Hz涡流相关数据而开发的软件基于高效的FFT方法,并且对数据集进行了时基匹配,漂移校正,坐标旋转以及协方差和频率功率分布的评估。用这种技术测定的N2O通量范围为38–113 ng N m-2 s-1。 N2O浓度协方差函数的异常形状可以归因于获取不均匀性,我们得出的结论是,涡旋相关性数据集除了其空间积分外,还包含可用于表征N2O排放的空间变异性的信息。

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