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Three-dimensional analysis of urban aerosols by use of a combined lidar, scanning electron microscopy, and x-ray microanalysis

机译:通过组合激光雷达,扫描电子显微镜和X射线显微分析对城市气溶胶进行三维分析

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摘要

We present a novel method of characterizing urban aerosols that combines scanning-electron microscopy, x-ray microanalysis, and lidar measurements. Inversion algorithms, based on fractal aerosol models, allowed us to compute the scattering coefficients of the measured size distribution. The a and 13 coefficients were used to invert lidar data, yielding what to our knowledge are the first quantitative three-dimensional measurements of the aerosol mass concentrations in urban conditions. The combined method was used during an extensive experiment in Lyon in the summer of 1996. Size distributions exhibit two main modes, at 0.1 and 0.9 μm, the composition of which was determined by x-ray micro-analysis. The first mode is soot, and the second is composed of 60% coarse soot particles and 40% silica particles. Lidar measurements showed a homogeneous aerosol concentration within the mixing layer and a steep gradient above. Measurements made over 24 h also showed loads that were due to traffic rush hours and the dynamics of the height of the planetary boundary layer. # 1998 Optical Society of America OCIS codes: 010.0010, 010.1110, 010.3640, 010.1120, 180.0180.
机译:我们提出了一种结合城市大气气溶胶特征的新颖方法,该方法结合了扫描电子显微镜,X射线微分析和激光雷达测量。基于分形气溶胶模型的反演算法使我们能够计算出所测尺寸分布的散射系数。使用a和13系数对激光雷达数据进行反演,据我们所知,这是对城市条件下气溶胶质量浓度的首次定量三维测量。该组合方法用于1996年夏天在里昂进行的广泛实验中。尺寸分布表现出两种主要模式,分别为0.1和0.9μm,其组成通过X射线微分析确定。第一种模式是烟灰,第二种模式是由60%的粗大烟灰颗粒和40%的二氧化硅颗粒组成。激光雷达测量显示混合层内的气溶胶浓度均匀,上方的梯度陡峭。在24小时内进行的测量还显示出由于交通高峰时间和行星边界层高度的动态而引起的载荷。 #1998美国光学学会OCIS代码:010.0010、010.1110、010.3640、010.1120、180.0180。

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