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Size Distribution and Optical Properties of Ambient Aerosols during Autumn in Orleans, France

机译:法国奥尔良秋季大气气溶胶的粒径分布和光学性质

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A new highly sensitive cavity ring-down spectrometer (CRDS) system was designed and assembled to determine the aerosol extinction coefficient (bext) at 532 nm. The performance of the CRDS was tested by the monodisperse polystyrene latex spheres (PSL) particles with diameters between 200 and 500 nm. By comparing the tested results with Mie theory curve, the uncertainty of the newly developed CRDS system was determined to be < 3%. Simultaneous measurements of the size distribution and extinction coefficient of ambient aerosols were conducted in Orleans, France, from 26th October to 21st December 2012 by using a scanning mobility particle sizer (SMPS) coupled to the CRDS system. For the non-dehydrated aerosols measured from 26th October to 4th November, the average bext has been found to be 41 ± 35 Mm–1. For the dehydrated aerosols measured from 7th November to 21st December, bext expresses a good agreement with the particle number (N) and volume (V) concentration, the average values of bext, N and V are 36 ± 31 Mm–1, 3300 ± 2700 cm–3 and 3.1 ± 2.8 × 109 nm3/cm3, respectively. Further analysis of the particle size distribution reveals that car and boiler emissions maybe the main aerosol sources in Orleans. In addition, back trajectory results indicate that the air parcel transported from Atlantic Ocean may play a role in cleaning up the ambient air in Orleans.
机译:设计并组装了一个新的高灵敏度腔衰荡光谱仪(CRDS)系统,以确定532 nm处的气溶胶消光系数(bext)。 CRDS的性能通过直径为200至500 nm的单分散聚苯乙烯胶乳球(PSL)颗粒进行测试。通过将测试结果与Mie理论曲线进行比较,新开发的CRDS系统的不确定度确定为<3%。 2012年10月26日至12月21日在法国奥尔良,使用与CRDS系统耦合的扫描迁移率粒度仪(SMPS),对环境气溶胶的粒径分布和消光系数进行了同时测量。对于从10月26日至11月4日测量的非脱水气溶胶,平均弯曲度为41±35 Mm-1。对于从11月7日至12月21日测量的脱水气溶胶,bext与颗粒数(N)和体积(V)浓度表现出很好的一致性,bext,N和V的平均值为36±31 Mm–1,3300±分别为2700 cm–3和3.1±2.8×109 nm3 / cm3。对粒度分布的进一步分析表明,汽车和锅炉排放物可能是奥尔良的主要气溶胶来源。此外,反向轨迹结果表明,从大西洋运来的空气包裹可能在净化奥尔良的环境空气中发挥了作用。

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