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首页> 外文期刊>Atmospheric Measurement Techniques >Assessment of the TROPOMI tropospheric NO 2 product based on airborne APEX observations
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Assessment of the TROPOMI tropospheric NO 2 product based on airborne APEX observations

机译:基于机载APEX观察的Tropomi Troposheric No 2产品评估

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摘要

Sentinel-5 Precursor (S-5P), launched in October 2017, carrying the TROPOspheric Monitoring Instrument (TROPOMI) nadir-viewing spectrometer, is the first mission of the Copernicus Programme dedicated to the monitoring of air quality, climate, and ozone. In the presented study, the TROPOMI tropospheric nitrogen dioxide ( NO 2 ) level-2 (L2) product (OFFL v1.03.01; 3.5? km ? × ?7? km at nadir observations) has been validated over strongly polluted urban regions by comparison with coincident high-resolution Airborne Prism EXperiment (APEX) remote sensing observations ( ~ ?75? m ? × ?120? m ). Satellite products can be optimally assessed based on (APEX) airborne remote sensing observations, as a large amount of satellite pixels can be fully mapped at high accuracy and in a relatively short time interval, reducing the impact of spatiotemporal mismatches. In the framework of the S-5P validation campaign over Belgium (S5PVAL-BE), the APEX imaging spectrometer has been deployed during four mapping flights (26–29?June 2019) over the two largest urban regions in Belgium, i.e. Brussels and Antwerp, in order to map the horizontal distribution of tropospheric NO 2 . For each flight, 10 to 20 TROPOMI pixels were fully covered by approximately 2700 to 4000 APEX measurements within each TROPOMI pixel. The TROPOMI and APEX NO 2 vertical column density (VCD) retrieval schemes are similar in concept. Overall, for the ensemble of the four flights, the standard TROPOMI NO 2 VCD product is well correlated ( R ? = ?0.92) but biased negatively by ? 1.2? ± ?1.2? × ?10 15 ? molec?cm ?2 or ? 14? ± ?12?%, on average, with respect to coincident APEX NO 2 retrievals. When replacing the coarse 1 ° ? × ?1 ° the massively parallel (MP) version of the Tracer Model version 5 (TM5) a priori NO 2 profiles by NO 2 profile shapes from the Copernicus Atmospheric Monitoring Service (CAMS) regional chemistry transport model (CTM) ensemble at 0.1 ° ? × ?0.1 ° , R is 0.94 and the slope increases from 0.82 to 0.93. The bias is reduced to ? 0.1? ± ?1.0? × ?10 15 ? molec?cm ?2 or ? 1.0? ± ?12?%. The absolute difference is on average 1.3? × ?10 15 ? molec?cm ?2 (16?%) and 0.7? × ?10 15 ? molec?cm ?2 (9?%), when comparing APEX NO 2 VCDs with TM5-MP-based and CAMS-based NO 2 VCDs, respectively. Both sets of retrievals are well within the mission accuracy requirement of a maximum bias of 25?%–50?% for the TROPOMI tropospheric NO 2 product for all individual compared pixels. Additionally, the APEX data set allows the study of TROPOMI subpixel variability and impact of signal smoothing due to its finite satellite pixel size, typically coarser than fine-scale gradients in the urban NO 2 field. For a case study in the Antwerp region, the current TROPOMI data underestimate localized enhancements and overestimate background values by approximately 1–2? × ?10 15 ? molec?cm ?2 (10?%–20?%).
机译:2017年10月推出的Sentinel-5前体(S-5P),携带对流层监测仪器(Tropomi)Nadir-Viewing Spector仪,是哥白尼计划的首次使命,致力于监测空气质量,气候和臭氧。在提出的研究中,Tropomi对流层氮二氧化含量(NO 2)水平-2(L2)产品(offl V1.03.01; 3.5?Km?在Nadir观测中,在Nadir观测中的7 km?Km)已经通过比较来验证了强烈污染的城市地区。与重合高分辨率空气棱镜实验(顶点)遥感观察(〜?75?M?×120?M)。卫星产品可以基于(顶点)空气传播的遥感观察来最佳地评估,因为大量卫星像素可以高精度地完全映射,并且在相对较短的时间间隔内,降低了时尚失配的影响。在比利时(S5PVAL-BE)的S-5P验证活动的框架中,Apex成像光谱仪在四个映射航班(2019年6月26日)在比利时两大城市地区,即布鲁塞尔和安特卫普,为了映射到对流层2号的水平分布。对于每个飞行,10至20个Tropomi像素在每个Tropomi像素内完全覆盖大约2700至4000个顶点测量。 Tropomi和Apex No 2垂直列密度(VCD)检索方案在概念中类似。总的来说,对于四个航班的集合,标准的roommi no 2 VCD产品具有很好的相关性(R?= 0.92),但偏向呈偏差? 1.2? ±1.2? ×10 15?分子?2或? 14?平均相对于重合的顶点没有2检索,平均值±12?%。更换粗1°时? ×1°绘制模型5(TM5)的大规模平行(MP)版本,通过NO 2简档,从Copernicus大气监测服务(CAM)区域化学输送模型(CTM)集合在0.1°时还×?0.1°,R为0.94,斜率从0.82增加到0.93。偏差减少到? 0.1? ±1.0? ×10 15?分子?2或? 1.0? ±12?%。绝对差异平均为1.3? ×10 15?分子?cm?2(16?%)和0.7? ×10 15?当分别使用TM5-MP的基于TM5-MP和基于CAP的NO 2 VCDS比较APEX NO 2 VCD时,分别?2(9Ω%)。对于所有单独的比较像素,两组检索在任务准确性要求的最大偏差的最大偏差为25?% - 50?%。此外,APEX数据集允许研究由于其有限卫星像素尺寸,通常粗糙地粗略梯度在城市没有2场中的微尺度梯度粗略地研究信号平滑的变异和影响。对于安特卫普地区的案例研究,目前的roommi数据低估了本地化增强,并高估了背景值大约1-2? ×10 15?分子?cm?2(10?% - 20?%)。

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