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DOI10.5194/acp-20-15761-2020
Monitoring CO emissions of the metropolis Mexico City using TROPOMI CO observations
Borsdorff T.; Reynoso A.G.; Maldonado G.; Mar-Morales B.; Stremme W.; Grutter M.; Landgraf J.
发表日期2020
ISSN1680-7316
起始页码15761
结束页码15774
卷号20期号:24
英文摘要

The Tropospheric Monitoring Instrument (TROPOMI) on the ESA Copernicus Sentinel-5 satellite (S5-P) measures carbon monoxide (CO) total column concentrations as one of its primary targets. In this study, we analyze TROPOMI observations over Mexico City in the period 14 November 2017 to 25 August 2019 by means of collocated CO simulations using the regional Weather Research and Forecasting coupled with Chemistry (WRF-Chem) model. We draw conclusions on the emissions from different urban districts in the region. Our WRF-Chem simulation distinguishes CO emissions from the districts Tula, Pachuca, Tulancingo, Toluca, Cuernavaca, Cuautla, Tlaxcala, Puebla, Mexico City, and Mexico City Arena by 10 separate tracers. For the data interpretation, we apply a source inversion approach determining per district the mean emissions and the temporal variability, the latter regularized to reduce the propagation of the instrument noise and forward-model errors in the inversion. In this way, the TROPOMI observations are used to evaluate the Inventario Nacional de Emisiones de Contaminantes Criterio (INEM) inventory that was adapted to the period 2017-2019 using in situ ground-based observations. For the Tula and Pachuca urban areas in the north of Mexico City, we obtain 0.10±0.004 and 0.09±0.005Tg yr-1 CO emissions, which exceeds significantly the INEM emissions of <0.008Tg yr-1 for both areas. On the other hand for Mexico City, TROPOMI estimates emissions of 0.14±0.006Tg yr-1 CO, which is about half of the INEM emissions of 0.25 Tg yr-1, and for the adjacent district Mexico City Arena the emissions are 0.28±0.01Tg yr-1 according to TROPOMI observations versus 0.14 Tg yr-1 as stated by the INEM inventory. Interestingly, the total emissions of both districts are similar (0.42±0.016Tg yr-1 TROPOMI versus 0.39 Tg yr-1 adapted INEM emissions). Moreover, for both areas we found that the TROPOMI emission estimates follow a clear weekly cycle with a minimum during the weekend. This agrees well with ground-based in situ measurements from the Secretariá del Medio Ambiente (SEDEMA) and Fourier transform spectrometer column measurements in Mexico City that are operated by the Network for the Detection of Atmospheric Composition Change Infrared Working Group (NDACC-IRWG). Overall, our study demonstrates an approach to deploying the large number of TROPOMI CO data to draw conclusions on urban emissions on sub-city scales for metropolises like Mexico City. Moreover, for the exploitation of TROPOMI CO observations our analysis indicates the clear need for further improvements of regional models like WRF-Chem, in particular with respect to the prediction of the local wind fields. © 2020 Copernicus GmbH. All rights reserved.

语种英语
scopus关键词carbon emission; carbon monoxide; climate modeling; concentration (composition); FTIR spectroscopy; mesoscale meteorology; tracer; troposphere; weather forecasting; wind field; Federal District [Mexico]; Mexico City; Mexico [North America]; Toluca
来源期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/247264
作者单位Netherlands Institute for Space Research, SRON, Utrecht, Netherlands; Centro de Ciencias de la Atmosfera, Universidad Nacional Autonoma de Mexico, Mexico City, Mexico
推荐引用方式
GB/T 7714
Borsdorff T.,Reynoso A.G.,Maldonado G.,et al. Monitoring CO emissions of the metropolis Mexico City using TROPOMI CO observations[J],2020,20(24).
APA Borsdorff T..,Reynoso A.G..,Maldonado G..,Mar-Morales B..,Stremme W..,...&Landgraf J..(2020).Monitoring CO emissions of the metropolis Mexico City using TROPOMI CO observations.ATMOSPHERIC CHEMISTRY AND PHYSICS,20(24).
MLA Borsdorff T.,et al."Monitoring CO emissions of the metropolis Mexico City using TROPOMI CO observations".ATMOSPHERIC CHEMISTRY AND PHYSICS 20.24(2020).
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