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Determination of field scale ammonia emissions for common slurry spreading practice with two independent methods

机译:使用两种独立的方法确定通常的浆料撒布实践中的田间规模氨气排放量

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At a cropland and a grassland site field scale ammonia (NHsub3/sub) emissions from slurry application were determined simultaneously by two approaches based on (i) eddy covariance (EC) flux measurements using high temperature Chemical Ionisation Mass Spectrometry (HT-CIMS) and on (ii) backward Lagrangian Stochastic (bLS) dispersion modelling using concentration measurements by three optical open path Fourier Transform Infrared (FTIR) systems. Slurry was spread on the fields in sequential tracks over a period of one to two hours. In order to calculate field emissions, measured EC/HT-CIMS fluxes were combined with flux footprint analysis of individual slurry spreading tracks to parameterise the NHsub3/sub volatilisation with a bi-exponential time dependence. Accordingly, track-resolved concentration footprints for the FTIR measurements were calculated using bLS. A consistency test with concentrations measured by impingers showed very low systematic deviations for the EC/HT-CIMS results (&8%) but larger deviations for the bLS/FTIR results. For both slurry application events, the period during fertilisation and the subsequent two hours contributed by more than 80% to the total field emissions. Averaged over the two measurement methods, the cumulated emissions of the first day amounted to 17 ± 3% loss of applied total ammoniacal nitrogen over the cropland and 16 ± 3% over the grassland field.
机译:在农田和草地场上,通过两种方法同时确定浆料中氨气(NH 3 )的排放量,这两种方法是基于(i)使用高温化学电离质谱法进行涡流协方差(EC)通量测量的(HT-CIMS)以及(ii)使用三个光学开放路径傅立叶变换红外(FTIR)系统进行浓度测量的反向拉格朗日随机(bLS)色散建模。在一到两个小时的时间内,将浆液按顺序铺在田间。为了计算场发射,将测得的EC / HT-CIMS通量与单个浆料铺展轨迹的通量足迹分析相结合,以双指数时间依赖性对NH 3 挥发进行参数化。因此,使用bLS计算了用于FTIR测量的痕迹分辨浓度足迹。用撞击器测量的浓度进行的一致性测试显示,EC / HT-CIMS结果的系统偏差非常小(<8%),而bLS / FTIR结果的偏差较大。对于这两次泥浆施用事件,施肥期间和随后的两个小时对田间总排放量的贡献超过80%。将这两种测量方法的平均值平均起来,第一天的累积排放量达到17或更多;农田中施用的总氨氮损失3%,损失16%或更多;草地面积的3%。

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