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Integration of backscattering lidar and ground-based meteorological and pollution data in Florence (Italy)

机译:佛罗伦萨(意大利)在佛罗伦萨和地面气象和污染数据的整合

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A statistically significant data set of backscattering LIDAR and ground-based information has been obtained for the planetary boundary layer (PBL) of Florence (I). The summer LIDAR backscattering data at 532 and 1064 nm have been used to estimate both the size and the number concentration of the urban aerosols in the accumulation mode. This technique seems to be relatively insensitive to the aerosol composition. The time-height evolution of the PBL $LB@mainly the stable (SL) and the mixed (ML) layers$RB has been plotted, together with the meteorological and ground-based pollution data for the 200 measurement days. The ground-based hourly pollution data (NOx, CO) have been compared with the hourly-averaged 1064 nm backscattering at 25 meters above the ground. A correlation, R equals 0.65, was obtained between NOx and 1064 nm backscattering during the summer period when the traffic aerosols do not grow considerably after their production. The correlation is not significant during winter, when the growth of the particles is much faster. During winter, the RH variations are more important than aerosol number variations to determine the backscattering evolution.
机译:已经为佛罗伦萨(I)的行星边界层(PBL)获得了统计学上的基于LIDAR和基于地基信息的数据集。 532和1064nm处的夏季激光雷达反向散射数据已被用于估计累积模式中城市气溶胶的大小和数量集中。这种技术似乎对气溶胶组合物相对不敏感。 PBL $ LB @主要是稳定(S​​L)和混合(ML)层$ RB的时间高度演化已经绘制,以及200个测量天的气象和地面污染数据。将基于地面的每小时污染数据(NOx,CO)与在地面上方25米处的每小时平均的1064nm后散列进行比较。当交通气溶胶在生产后,在夏季时期,在NOx和1064nm之间获得相关性R等于0.65,在夏季期间在夏季期间进行了反散射。当颗粒的生长更快时,冬季之间的相关性并不重要。在冬季,RH变化比气溶胶数变异更重要,以确定反向散射的进化。

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