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Airborne intercomparison of vacuum ultraviolet fluorescence and tunable diode laser absorption measurements of tropospheric carbon monoxide

机译:真空紫外荧光与可调谐二极管激光吸收测量对流层一氧化碳的空气比对

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摘要

During the fall 1997 North Atlantic Regional Experiment (NARE 97), two separate intercomparisons of aircraft-based carbon monoxide measurement instrumentation were conducted. On September 2, CO measurements were simultaneously made aboard the National Oceanic and Atmospheric Administration (NOAA) WP-3 by vacuum ultraviolet (VUV) fluorescence and by tunable diode laser absorption spectroscopy (TDLAS), On September 18, an intercomparison flight was conducted between two separate instruments, both employing the VUV fluorescence method, on the NOAA WP-3 and the U,K. Meteorological Office C-130 Hercules. The results indicate that both of the VUV fluorescence instruments and the TDLAS system are capable of measuring ambient CO accurately and precisely with no apparent interferences in 5 s. The accuracy of the measurements, based upon three independent calibration systems, is indicated by the agreement to within 11% with systematic offsets of less than 1 ppbv. In addition, one of the groups participated in the Measurement of Air Pollution From Satellite (MAPS) intercomparison [Novelli ef at., 1998] with a different measurement technique but very similar calibration system, and agreed with the accepted analysis to within 5%. The precision of the measurements is indicated by the variability of the ratio of simultaneous measurements from the separate instruments, This variability is consistent with the estimated precisions of 1.5 ppbv and 2.2 ppbv for the 5 s average results of the C-130 and the WP-3 instruments, respectively, and indicates a precision of approximately 3.6% for the TDLAS instrument. The excellent agreement of the instruments in both intercomparisons demonstrates that significant interferences in the measurements are absent in air masses that ranged from 7 km in the midtroposphere to boundary layer conditions including subtropical marine air and continental outflow with embedded urban plumes. The intercomparison of the two VUV instruments that differed widely in their design indicates that the VUV fluorescence technique for CO measurements is not particularly sensitive to the details of its implementation. These intercomparisons help to establish the reliability of ambient CO measurements by the VUV fluorescence technique.
机译:在1997年秋季的北大西洋区域实验(NARE 97)中,进行了两个基于飞机的一氧化碳测量仪器的独立比较。 9月2日,美国国家海洋和大气管理局(NOAA)WP-3上同时通过真空紫外(VUV)荧光和可调谐二极管激光吸收光谱(TDLAS)进行了CO测量。9月18日,进行了两次比对飞行在NOAA WP-3和U,K上分别使用VUV荧光法的两种独立仪器。气象局C-130大力神。结果表明,VUV荧光仪器和TDLAS系统都能够准确,精确地测量环境CO,并且在5 s内没有明显的干扰。协议表明,基于三个独立的校准系统的测量精度在11%以内,系统偏差小于1 ppbv。此外,其中一组参加了采用不同的测量技术但非常相似的校准系统进行的卫星空气污染测量(MAPS)比较(Novelli等,1998),并同意接受的分析率在5%之内。测量的精确度由来自不同仪器的同时测量比率的变异性表示,该变异性与C-130和WP-C的5 s平均结果的估计精度1.5 ppbv和2.2 ppbv一致。 3台仪器,分别表示TDLAS仪器的精度约为3.6%。这两个比对仪器的高度一致性表明,在对流层中线7 km到边界层条件(包括亚热带海洋空气和埋有城市羽状流的大陆流出)的空气质量范围内,没有明显的测量干扰。两种VUV仪器的设计差异很大,它们之间的比较表明,用于CO测量的VUV荧光技术对其实施细节并不特别敏感。这些比较有助于通过VUV荧光技术建立环境CO测量的可靠性。

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