An operational monitoring method for full coverage pollution enterprises based on satellite remote sensing

Author:

Wang Qiao,Li QingORCID,Wang Zhongting,Chen Hui,Ma Pengfei,Ping Fan,Liu Cheng

Publisher

Elsevier BV

Subject

Atmospheric Science,Pollution,Waste Management and Disposal

Reference61 articles.

1. Ground-based and OMI-TROPOMI NO2 measurements at El Arenosillo observatory: unexpected upward trends;Adame;Environ. Pollut.,2020

2. Spatial estimation of surface ozone concentrations in Quito Ecuador with remote sensing data,air pollution measurements and meteorological variables;Alvarez-Mendoza;Environ. Monit. Assess.,2019

3. Assessment of remote sensing data to model PM10 estimation in cities with a low number of air quality stations: a case of study in quito;Alvarez-Mendoza;Ecuador[Environments,2019

4. OMI algorithm theoretical basis document,volume IV: OMI trace gas algorithms;Chance,2002

5. Spectroscopic measurements of tropospheric composition from satellite measurements in the ultraviolet and visible: steps toward continuous pollution monitoring from space;Chance,2006

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