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Atmospheric Pollution Monitoring in Urban Area by Employing a 450-nm Lidar System

机译:使用450纳米激光雷达系统监测城市大气污染

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摘要

In past decades, lidar techniques have become main tools for atmospheric remote sensing. However, traditional pulsed lidar systems are relatively expensive and require considerable maintenance. These shortcomings may be overcome by the development of a blue band Scheimpflug lidar system in Dalian, Northern China. Atmospheric remote measurements were carried out for 10 days in an urban area to validate the feasibility and performance of a 450-nm Scheimpflug lidar system. A 24-h continuous measurement was achieved in winter on a near horizontal path with an elevation angle of about 6.4°. The aerosol extinction coefficient retrieved by the Fernald-inversion algorithm shows good agreement with the variation of PM10/PM2.5 concentrations recorded by a national pollution monitoring station. The experimental result reveals that the linear ratio between the aerosol extinction coefficient and the PM10 concentration under high relative humidity (75–90%) is about two-times that in low relative humidity (≤75%) when the PM10 concentrations are less than 100 µg/m3.
机译:在过去的几十年中,激光雷达技术已成为大气遥感的主要工具。然而,传统的脉冲激光雷达系统相对昂贵并且需要大量维护。这些缺点可以通过在中国北方的大连开发蓝带Scheimpflug激光雷达系统克服。在市区进行了为期10天的大气远程测量,以验证450 nm Scheimpflug激光雷达系统的可行性和性能。冬季,在接近水平的路径上以约6.4°的仰角实现了24小时连续测量。通过Fernald反演算法获得的气溶胶消光系数与国家污染监测站记录的PM10 / PM2.5浓度变化表现出很好的一致性。实验结果表明,当PM10浓度小于100时,高相对湿度(75-90%)时,气溶胶的消光系数与PM10浓度之间的线性比约为低相对湿度(≤75%)时的两倍。 µg / m 3

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