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首页> 外文期刊>Atmospheric chemistry and physics >Four-year long-path monitoring of ambient aerosol extinction at a central European urban site: dependence on relative humidity
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Four-year long-path monitoring of ambient aerosol extinction at a central European urban site: dependence on relative humidity

机译:在中欧城市遗址的环境气溶胶灭绝的四年长路监测:依赖相对湿度

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摘要

The ambient aerosol particle extinction coefficient is measured with the Spectral Aerosol Extinction Monitoring System (S?MS) along a 2.84 km horizontal path at 30-50m height above ground in the urban environment of Leipzig (51.3° N, 12.4° E), Germany, since 2009. The dependence of the particle extinction coefficient (wavelength range from 300 to 1000 nm) on relative humidity up to almost 100%was investigated. The main results are presented. For the wavelength of 550 nm, the mean extinction enhancement factor was found to be 1.75±0.4 for an increase of relative humidity from 40 to 80 %. The respective 4-year mean extinction enhancement factor is 2.8 ± 0.6 for a relative-humidity increase from 40 to 95 %. A parameterization of the dependency of the urban particle extinction coefficient on relative humidity is presented. A mean hygroscopic exponent of 0.46 for the 2009-2012 period was determined. Based on a backward trajectory cluster analysis, the dependence of several aerosol optical properties for eight air flow regimes was investigated. Large differences were not found, indicating that local pollution sources widely control the aerosol conditions over the urban site. The comparison of the S?MS extinction coefficient statistics with respective statistics from ambient AERONET sun photometer observations yields good agreement. Also, time series of the particle extinction coefficient computed from in situ-measured dry particle size distributions and humidity-corrected S?MS extinction values (for 40% relative humidity) were found in good overall consistency, which verifies the applicability of the developed humidity parameterization scheme. The analysis of the spectral dependence of particle extinction (?ngstr?m exponent) revealed an increase of the 390-881 nm ?ngstr?m exponent from, on average, 0.3 (at 30% relative humidity) to 1.3 (at 95% relative humidity) for the 4-year period.
机译:环境气溶胶颗粒消光系数用光谱气溶胶消光监测系统(S-MS)沿着2.84 km水平路径,在Leipzig的城市环境中以30-50米高的地面(51.3°N,12.4°E),德国,自2009年以来,研究了粒子消光系数(波长范围为300至1000nm)的相对湿度,高达几乎100%。主要结果呈现。对于550nm的波长,发现平均消光增强因子为1.75±0.4,增加相对湿度为40%至80%。相对湿度增加40%至95%,相应的4岁平均消光增强因子为2.8±0.6。介绍了城市粒子消光系数对相对湿度的依赖性的参数化。确定了2009 - 2012年期间0.46的平均吸湿性指数。基于向后轨迹聚类分析,研究了几种气溶胶光学性能对八个空气流动制度的依赖性。未发现大差异,表明本地污染源广泛控制城市遗址的气溶胶条件。 S的比较与环境AeroNet太阳光度计观察的各自统计数据的灭绝系数统计数据产生了良好的一致性。此外,从原位测量的干燥粒度分布和湿度校正的S?MS消光值(对于40%相对湿度)的粒子消光系数的时间序列被发现良好的整体一致性,这验证了发达湿度的适用性参数化方案。粒子消光的光谱依赖性的分析显示,平均值为0.3(相对湿度)至1.3(相对95%)增加390-881nmΔngstrΔm指数的增加湿度)为期4年。

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