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High-resolution air quality monitoring from space: a fast retrieval scheme for CO from hyperspectral infrared measurements

机译:从太空进行高分辨率空气质量监测:从高光谱红外测量中快速检索CO的方案

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摘要

The first results of the Fast Linear Inversion Trace gas System (FLITS) retrieval scheme are presented here for CO from IASI (Infrared Atmospheric Sounding Interferometer) measurements using RAQMS (Real time Air Quality Modelling System) as atmospheric background. FLITS is a simple linear inversion scheme with a stable performance that retrieves total column CO concentrations (molec cm) at single field-of-view (FOV) irrespective of cloud cover. A case study is presented here for a biomass burning plume over the Pacific on 29 March 2010. For each FOV a single tropospheric CO density, vertically integrated over 200–800 hPa, is retrieved with 12 channels in the spectral range 2050–2225 cm. Despite variations in cloud cover and temperature, the degrees of freedom for signal (DFS) of the solution ranges between 0.8 and 0.95. In addition, the retrieval error is at least half the background error of 10 %, with dominant contribution from uncertainty in the measurement and temperature. With its stability and processing speed, FLITS meet two of the key requirements for operational processing. We conclude that the linear combination of space-borne measurements with a chemical transport model in the FLITS retrieval scheme holds potential for real-time air quality monitoring and evaluation of pollutant transport at high spatial resolution.
机译:在此,使用RAQMS(实时空气质量建模系统)作为大气背景,通过IASI(红外大气探测干涉仪)测量中的CO,给出了快速线性反演示踪气体系统(FLITS)检索方案的初步结果。 FLITS是一种简单的线性反演方案,具有稳定的性能,可在单个视场(FOV)下检索总柱状CO浓度(molec cm),而与云量无关。这里提供了一个案例研究,2010年3月29日是太平洋上的生物质燃烧羽状流。对于每个FOV,将在2050-2225 cm的光谱范围内通过12个通道获取垂直对流200-800 hPa内的单个对流层CO密度。尽管云量和温度有所变化,但解决方案的信号自由度(DFS)在0.8到0.95之间。此外,取回误差至少是背景误差(10%)的一半,主要来自测量和温度不确定性。 FLITS具有稳定性和处理速度,可以满足操作处理的两个关键要求。我们得出的结论是,FLITS检索方案中的星载测量与化学迁移模型的线性组合具有在高空间分辨率下实时监测空气质量和评估污染物迁移的潜力。

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