大型城市地区生物气溶胶污染快速监测的远距离激光雷达制图原理图

D. Stoyanov, I. Nedkov, V. Groudeva, Z. Cherkezova-Zheleva, I. Grigorov, G. Kolarov, M. Iliev, R. Ilieva, D. Paneva, C. Ghelev
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引用次数: 3

摘要

光探测与测距(LIDAR)大气遥感是远程监测气溶胶污染及其在大气中传播的主要工具。将激光雷达传感与地面气溶胶监测相结合,可以形成综合空气质量表征的基础。当存在时,生物大气污染通过被称为生物气溶胶的不同大小的气溶胶颗粒传播,其监测现在是大气研究的基本领域之一,特别是在人口稠密的大城市地区,那里存在许多生物气溶胶排放源。因此,及时识别生物气溶胶源,包括其地理坐标、强度、时空分布等,成为城市监测系统的重要任务。本章主张将激光雷达测绘示意图与城市地区生物气溶胶的原位采样和表征相结合。旨在防止进一步大气污染的测量、数据处理和决策应以接近实时的模式进行,这对典型的激光雷达原理图提出了一定的要求,包括远程传感作为关键参数,特别是在大面积(10 - 100平方公里)。在本章中,我们描述了使用激光雷达原理图的实验,该原理图允许对城市生物气溶胶进行近实时的远距离测量,并结合其地面采样和物理化学和生物学研究。
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Long-Distance LIDAR Mapping Schematic for Fast Monitoring of Bioaerosol Pollution over Large City Areas
Light detection and ranging (LIDAR) atmospheric sensing is a major tool for remote monitoring of aerosol pollution and its propagation in the atmosphere. Combining LIDAR sensing with ground-based aerosol monitoring can form the basis of integrated air-quality characterization. When present, biological atmospheric contamination is transported by aerosol particles of different size known as bioaerosol, whose monitoring is now among the basic areas of atmospheric research, especially in densely-populated large urban regions, where many bio-aerosol-emitting sources exist. Thus, promptly identifying the bioaerosol sources, including their geographical coordinates, intensities, space-time distributions, etc., becomes a major task of a city monitoring system. This chapter argues in favor of integrating a LIDAR mapping schematic with in situ sampling and characterization of the bioaerosol in the urban area. The measurements, data processing, and decision-making aimed at preventing further atmospheric contamination should be performed in a near-real-time mode, which imposes certain demands on the typical LIDAR schematics, including long-range sensing as a critical parameter, especially over large areas (10 – 100 km2). In this chapter, we describe experiments using a LIDAR schematic allowing near-real-time long-distance measurements of urban bioaerosol combined with its ground-based sampling and physicochemical and biological studies.
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