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首页> 外文期刊>Atmospheric Measurement Techniques >An intercomparison of total column-averaged nitrous oxide between ground-based FTIR TCCON and NDACC measurements at seven sites and comparisons with the GEOS-Chem model
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An intercomparison of total column-averaged nitrous oxide between ground-based FTIR TCCON and NDACC measurements at seven sites and comparisons with the GEOS-Chem model

机译:在七个地点在七个地点与Geos-Chem模型的基于地面FTIR TCCON和NDACC测量之间的总柱平均二氮氧化物的相应和与Geos-Chem模型的比较

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摘要

Nitrous oxide (N2O) is an important greenhouse gas and it can also generate nitric oxide, which depletes ozone in the stratosphere. It is a common target species of ground-based Fourier transform infrared (FTIR) near-infrared (TCCON) and mid-infrared (NDACC) measurements. Both TCCON and NDACC networks provide a long-term global distribution of atmospheric N2O mole fraction. In this study, the dry-air column-averaged mole fractions of N2O (X-N2O) from the TCCON and NDACC measurements are compared against each other at seven sites around the world (Ny-Alesund, Sodankyla, Bremen, Izana, Reunion, Wollongong, Lauder) in the time period of 2007-2017. The mean differences in X-N2O between TCCON and NDACC (NDACC-TCCON) at these sites are between -3.32 and 1.37 ppb (-1.1 %-0.5 %) with standard deviations between 1.69 and 5.01 ppb (0.5 %-1.6 %), which are within the uncertainties of the two datasets. The NDACC N2O retrieval has good sensitivity throughout the troposphere and stratosphere, while the TCCON retrieval underestimates a deviation from the a priori in the troposphere and overestimates it in the stratosphere. As a result, the TCCON X-N2O measurement is strongly affected by its a priori profile.
机译:氧化亚氮(N2O)是一个重要的温室气体,也可以产生一氧化氮,其在平流层中耗尽臭氧。它是基于地面的傅里叶变换红外(FTIR)近红外(TCCON)和中红外(NDACC)测量的常见目标。 TCCON和NDACC网络都提供了大气N2O摩尔分数的长期全球分布。在这项研究中,在世界各地的七个地点(NY-Alesund,SodaNkyla,Bremen,Izana,Reunion,Reunion,互相比较来自TCCON和NDACC测量的干燥空气柱平均摩尔分数与TCCON和NDACC测量的摩尔分数相互比较伍伦松,劳耶斯)在2007 - 2017年的时间。在这些位点的TCCON和NDACC(NDACC-TCCON)之间的平均差异在-3.32和1.37 ppb(-1.1%-0.5%)之间,标准偏差在1.69和5.01 ppb之间(0.5%-1.6%),这在两个数据集的不确定性范围内。 NDACC N2O检索在整个对流层和平流层中具有良好的敏感性,而TCCON检索低估了对流层中优先考虑的偏差,并在平流层中高估了它。结果,TCCON X-N2O测量受其先验型材的强烈影响。

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