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Remote Sensing Detection of atmospheric pollutants using Lidar,Sodar and correlation with air quality data in an industrial area

机译:使用激光雷达,声雷达和工业区空气质量数据的遥感检测大气污染物

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Optical remote sensing techniques have obvious advantages for monitoring gas and aerosol emissions, since they enable the operation over large distances, far from hostile environments, and fast processing of the measured signal. In this study two remote sensing devices, namely a Lidar (Light Detection and Ranging) for monitoring the vertical profile of backscattered light intensity, and a Sodar (Acoustic Radar, Sound Detection and Ranging) for monitoring the vertical profile of the wind vector were operated during specific periods. The acquired data were processed and compared with data of air quality obtained from ground level monitoring stations, in order to verify the possibility of using the remote sensing techniques to monitor industrial emissions. The campaigns were carried out in the area of the Environmental Research Center (Cepema) of the University of Sao Paulo, in the city of Cubatao, Brazil, a large industrial site, where numerous different industries are located, including an oil refinery, a steel plant, as well as fertilizer, cement and chemical/petrochemical plants. The local environmental problems caused by the industrial activities are aggravated by the climate and topography of the site, unfavorable to pollutant dispersion. Results of a campaign are presented for a 24-hour period, showing data of a Lidar, an air quality monitoring station and a Sodar.
机译:光学遥感技术在监视气体和气溶胶排放方面具有明显的优势,因为它们可以在远距离,远离敌对环境的情况下进行操作,并且可以快速处理被测信号。在这项研究中,使用了两个遥感设备,分别是用于监测反向散射光强度的垂直剖面的激光雷达(光检测和测距)和用于监测风向矢量的垂直剖面的声雷达(声雷达,声音检测和测距)在特定时期。处理所获取的数据,并将其与从地面监测站获得的空气质量数据进行比较,以验证使用遥感技术监测工业排放的可能性。这些运动是在巴西库班陶市圣保罗大学环境研究中心(Cepema)的地区进行的,该中心是一个大型工业基地,那里分布着许多不同的行业,包括炼油厂,钢铁厂等。工厂,以及化肥,水泥和化学/石化工厂。工业活动引起的局部环境问题因场地的气候和地形而加剧,不利于污染物的扩散。竞选活动的结果在24小时内显示,其中显示了激光雷达,空气质量监测站和苏打雷达的数据。

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