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Mixing layer height measurements determines influence of meteorology on air pollutant concentrations in urban area

机译:混合层高度测量确定了气象学对市区空气污染物浓度的影响

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Mixing layer height (MLH) is a key parameter to determine the influence of meteorological parameters upon air pollutants such as trace gas species and particulate concentrations near the surface. Meteorology, and MLH as a key parameter, affect the budget of emission source strengths, deposition, and accumulation. However, greater possibilities for the application of MLH data have been identified in recent years. Here, the results of measurements in Berlin in 2014 are shown and discussed. The concentrations of NO, NO_2, O_3, CO, PM_1, PM_(2.5), PM_(10) and about 70 volatile organic compounds (anthropogenic and biogenic of origin) as well as particle size distributions and contributions of secondary organic aerosol and soot species to PM were measured at the urban background station of the Berlin air quality network (BLUME) in Nansenstr./Framstr., Berlin-Neukolln. A Vaisala ceilometer CL51, which is a commercial mini-lidar system, was applied at that site to detect the layers of the lower atmosphere in real time. Special software for these ceilometers with MATLAB provided routine retrievals of MLH from vertical profiles of laser backscatter data. Five portable Bruker EM27/SUN FTIR spectrometers were set up around Berlin to detect column averaged abundances of CO_2 and CH_4 by solar absorption spectrometry. Correlation analyses were used to show the coupling of temporal variations of trace gas compounds and PM with MLH. Significant influences of MLH upon NO, NO_2, PM_(10), PM_(2.5), PM_1 and toluene (marker for traffic emissions) concentrations as well as particle number concentrations in the size modes 70-100 nm, 100 - 200 nm and 200 - 500 nm on the basis of averaged diurnal courses were found. Further, MLH was taken as important auxiliary information about the development of the boundary layer during each day of observations, which was required for the proper estimation of CO_2 and CH_4 source strengths from Berlin on the basis of atmospheric column density measurements.
机译:混合层高度(MLH)是确定气象参数对空气污染物(例如地表附近的痕量气体种类和颗粒物浓度)的影响的关键参数。气象学和MLH是关键参数,会影响排放源强度,沉积和积累的预算。但是,近年来已经发现了应用MLH数据的更大可能性。此处显示并讨论了2014年柏林的测量结果。 NO,NO_2,O_3,CO,PM_1,PM_(2.5),PM_(10)和约70种挥发性有机化合物(人为和生物来源)的浓度以及二级有机气溶胶和烟尘种类的粒径分布和贡献到PM的测量是在柏林-纽科林的Nansenstr./Framstr。的柏林空气质量网络(BLUME)的城市背景站进行的。在该地点使用了维萨拉云高仪CL51,这是一种商用小型激光雷达系统,用于实时检测低层大气层。这些带有MATLAB的云高仪的专用软件提供了从激光反向散射数据的垂直剖面中常规检索MLH的功能。在柏林附近建立了五台便携式布鲁克EM27 / SUN FTIR光谱仪,以通过太阳吸收光谱法检测柱平均CO_2和CH_4的丰度。相关分析用于显示微量气体化合物和PM与MLH的时间变化的耦合。 MLH对尺寸模式为70-100 nm,100-200 nm和200的NO,NO_2,PM_(10),PM_(2.5),PM_1和甲苯(交通排放的标志物)浓度以及颗粒数浓度的重大影响-根据平均日航向发现了500 nm。此外,MLH被视为有关每天观察期间边界层发展的重要辅助信息,这是根据大气柱密度测量值正确估算来自柏林的CO_2和CH_4源强度所必需的。

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