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Analysis evaluation of near-infrared spectral sensitivity in ground-based XCO2 retrieval using ground-based observations

机译:基于地面观测的地面XCO2检索中近红外光谱灵敏度的分析评估

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Atmospheric XCO2 (column-averaged dry air mole fractions of atmospheric carbon dioxide) observed by ground-based instruments is one of the important data sources for validating and improving XCO2 retrievals from satellite observations. In this study, Ground-based observations of XCO2 were carried out at the grasslands in Xilinhot, Inner Mongolia of China and Yanting Agro-ecological Experimental Station of Purple Soil, Sichuan of China, by using a ground-based observation system mainly consisting of an optical spectrum analyzer (OSA) and a sun tracker. From the observed solar spectral intensity data, XCO2 data were derived using the Least Squares Matching algorithm applied to the near-infrared spectral data obtained around 1.6µm wavelength and the spectrum simulated based on HITRAN08, as well as concerning with the spectral absorption features of atmospheric CO and the effect of Fraunhofer lines. In the process of XCO2 retrieval, we evaluated the effects of used meteorological parameters on retrieving XCO2. The results show that the spectral transmittance in the wavelength of 6357–6358cm, 6360–6361cm, and 6363–6364cm is sensitive to the meteorological parameters, and the uncertainty of meteorological parameters lead to an up to 4ppm bias of XCO2 retrievals. These results can be used as references for the optimal spectral selection and retrieval algorithm improvement of ground-based XCO2 observation.
机译:地面仪器观测到的大气XCO2(大气二氧化碳的列平均干燥空气摩尔分数)是验证和改进从卫星观测中获取XCO2的重要数据来源之一。在这项研究中,XCO2的地面观测是在中国内蒙古锡林浩特和中国四川紫色土盐亭农业生态试验站进行的,采用的地面观测系统主要包括光谱分析仪(OSA)和太阳跟踪仪。从观测到的太阳光谱强度数据中,使用最小二乘匹配算法导出XCO2数据,该算法应用于在1.6μm波长附近获得的近红外光谱数据和基于HITRAN08模拟的光谱,并涉及大气的光谱吸收特性。 CO和Fraunhofer品系的影响。在XCO2检索过程中,我们评估了使用气象参数对XCO2检索的影响。结果表明,在6357–6358cm,6360–6361cm和6363–6364cm波长处的光谱透射率对气象参数敏感,而气象参数的不确定性导致XCO2取回的偏差高达4ppm。这些结果可作为地面XCO2观测最佳光谱选择和检索算法改进的参考。

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