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Validation of routine continuous airborne CO2 observations near the Bialystok Tall Tower

机译:验证双塔附近的常规连续机载二氧化碳观察

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Since 2002 in situ airborne measurements of atmospheric CO2 mixing ratios have been performed regularly aboard a rental aircraft near Bialystok (53°08′ N, 23°09′ E), a city in northeastern Poland. Since August 2008, the in situ CO2 measurements have been made by a modified commercially available and fully automated non-dispersive infrared (NDIR) analyzer system. The response of the analyzer has been characterized and the CO2 mixing ratio stability of the associated calibration system has been fully tested, which results in an optimal calibration strategy and allows for an accuracy of the CO2 measurements within 0.2 ppm. Besides the in situ measurements, air samples have been collected in glass flasks and analyzed in the laboratory for CO2 and other trace gases. To validate the in situ CO2 measurements against reliable discrete flask measurements, we developed weighting functions that mimic the temporal averaging of the flask sampling process. Comparisons between in situ and flask CO2 measurements demonstrate that these weighting functions can compensate for atmospheric variability, and provide an effective method for validating airborne in situ CO2 measurements. In addition, we show the nine-year records of flask CO2 measurements. The new system, automated since August 2008, has eliminated the need for manual in-flight calibrations, and thus enables an additional vertical profile, 20 km away, to be sampled at no additional cost in terms of flight hours. This sampling strategy provides an opportunity to investigate both temporal and spatial variability on a regular basis.
机译:自2002年以来,在大型大气中的速度测量的测量中,定期乘坐租赁飞机在Bialystok附近(53°08',23°09'e),这是波兰东北部的一个城市。自2008年8月以来,通过改进的市售和全自动的非分散红外(NDIR)分析仪系统进行了原位二氧化碳测量。已经表征了分析仪的响应,并且已经完全测试了相关校准系统的CO2混合比稳定性,这导致最佳校准策略,并允许在0.2ppm内的CO2测量的精度。除了原位测量外,还在玻璃烧瓶中收集空气样品,并在实验室分析为CO 2和其他痕量气体。为了验证原位二氧化碳测量以防止可靠的离散烧瓶测量,我们开发了用于模拟烧瓶采样过程的时间平均的加权函数。原位和烧瓶CO2测量之间的比较表明,这些加权功能可以补偿大气变异性,并提供一种有效的方法,用于在原位二氧化碳测量中验证空气传播。此外,我们展示了烧瓶CO2测量的九年记录。新系统自动化自2008年8月以来,已消除了对飞行手动校准的需求,从而使额外的垂直轮廓距离距离20公里,在飞行时间没有额外的成本。这种抽样策略提供了在定期调查时间和空间变异的机会。

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