首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Intercomparison of NO2, O4, O3 and HCHO slant column measurements by MAX-DOAS and zenith-sky UV–visible spectrometers during CINDI-2
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Intercomparison of NO2, O4, O3 and HCHO slant column measurements by MAX-DOAS and zenith-sky UV–visible spectrometers during CINDI-2

机译:MINDI-2期间MAX-DOAS和Zenith-Sky紫外线可见光光谱仪测量No2,O4,O3和HCho倾斜柱测量的相互比较

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In September?2016, 36 spectrometers from 24 institutes measured a number of key atmospheric pollutants for a period of 17d during the Second Cabauw Intercomparison campaign for Nitrogen Dioxide measuring Instruments (CINDI-2) that took place at Cabauw, the Netherlands (51.97°N, 4.93°E). We report on the outcome of the formal semi-blind intercomparison exercise, which was held under the umbrella of the Network for the Detection of Atmospheric Composition Change (NDACC) and the European Space Agency (ESA). The three major goals of CINDI-2 were (1)?to characterise and better understand the differences between a large number of multi-axis differential optical absorption spectroscopy (MAX-DOAS) and zenith-sky DOAS instruments and analysis methods, (2)?to define a robust methodology for performance assessment of all participating instruments, and (3)?to contribute to a harmonisation of the measurement settings and retrieval methods. This, in turn, creates the capability to produce consistent high-quality ground-based data sets, which are an essential requirement to generate reliable long-term measurement time series suitable for trend analysis and satellite data validation. The data products investigated during the semi-blind intercomparison are slant columns of nitrogen dioxide (NO2), the oxygen collision complex (O4) and ozone (O3) measured in the UV and visible wavelength region, formaldehyde (HCHO) in the UV spectral region, and NO2 in an additional (smaller) wavelength range in the visible region. The campaign design and implementation processes are discussed in detail including the measurement protocol, calibration procedures and slant column retrieval settings. Strong emphasis was put on the careful alignment and synchronisation of the measurement systems, resulting in a unique set of measurements made under highly comparable air mass conditions. The CINDI-2 data sets were investigated using a regression analysis of the slant columns measured by each instrument and for each of the target data products. The slope and intercept of the regression analysis respectively quantify the mean systematic bias and offset of the individual data sets against the selected reference (which is obtained from the median of either all data sets or a subset), and the rms error provides an estimate of the measurement noise or dispersion. These three criteria are examined and for each of the parameters and each of the data products, performance thresholds are set and applied to all the measurements. The approach presented here has been developed based on heritage from previous intercomparison exercises. It introduces a quantitative assessment of the consistency between all the participating instruments for the MAX-DOAS and zenith-sky DOAS techniques.
机译:9月份2016年,来自24所研究所的36个光谱仪测量了许多关键的大气污染物,在荷兰Cabauw的二氧化氮测量仪器(Cindi-2)的第二个Cabauw离法比较运动期间为17D的一段时间(51.97°N) ,4.93°E)。我们报告了正式半盲目互相练习的结果,该举行的正式举行,该举措是在网络的范围下举行的,以检测大气组成变更(NDACC)和欧洲航天局(ESA)。 Cindi-2的三个主要目标是(1)?表征和更好地了解大量多轴差分光学吸收光谱(MAX-DOA)和Zenith-Sky DoAS仪器和分析方法之间的差异(2) ?为所有参与仪器的性能评估定义稳健的方法,以及(3)?有助于协调测量设置和检索方法。反过来,这产生了生产一致的高质量地面数据集的能力,这是生成适用于趋势分析和卫星数据验证的可靠长期测量时间序列的基本要求。在半盲目中进行的数据产品是亚氮二氧化氮(NO 2)的倾斜柱,在UV和可见波长区域中测量的氧碰撞复合物(O4)和臭氧(O 3),UV光谱区域中的甲醛(HCHO)并且在可见区域中的额外(较小)波长范围内的NO2。竞选设计和实现过程是详细讨论的,包括测量协议,校准程序和斜率列检索设置。强调强调测量系统的仔细对准和同步,导致在高可比空气质量条件下进行的独特测量。使用每个仪器测量的倾斜列的回归分析和每个目标数据产品来研究Cindi-2数据集。回归分析的斜率和截距分别通过对所选参考的单个数据集的平均系统偏置和偏移量(从所有数据集或子集的中值获得),并且RMS错误提供了估计测量噪声或分散。检查这三个标准,并针对每个参数和每个数据产品,设置性能阈值并将其应用于所有测量。这里展示的方法是根据以前的交流练习的遗产开发的。它介绍了Max-DoaS和Zenith-Sky Doas技术的所有参与仪器之间的定量评估。

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