Raman Lidar Observations of Aerosol Optical Properties in 11 Cities from France to Siberia

Наблюдения оптических свойств аэрозолей методом рамановского лидара в 11 городах от Франции до Сибири
Elsa Dieudonné, Patrick Chazette, Fabien Marnas, Julien Totems, Xiaoxia Shang
2017-09-22

Raman lidaraerosol optical propertieslidar ratioparticle depolarization ratiopolluted dust
In June 2013, a ground-based mobile lidar performed the ~10,000 km ride from Paris to Ulan-Ude, near Lake Baikal, profiling aerosol optical properties in the cities visited along the journey and allowing the first comparison of urban aerosols optical properties across Eurasia. The lidar instrument was equipped with N2-Raman and depolarization channels, enabling the retrieval of the 355-nm extinction-to-backscatter ratio (also called Lidar Ratio (LR)) and the linear Particle Depolarization Ratio (PDR) in the urban planetary boundary or residual layer over 11 cities. The optical properties of pollution particles were found to be homogeneous all along the journey: no longitude dependence was observed for the LR, with most values falling within the 67–96 sr range. There exists only a slight increase of PDR between cities in Europe and Russia, which we attribute to a higher fraction of coarse terrigenous particles lifted from bad-tarmac roads and unvegetated terrains, which resulted, for instance, in a +1.7% increase between the megalopolises of Paris and Moscow. A few lower LR values (38 to 50 sr) were encountered above two medium size Siberian cities and in an isolated plume, suggesting that the relative weight of terrigenous aerosols in the mix may increase in smaller cities. Space-borne observations from the Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP), retrieved during summer 2013 above the same Russian cities, confirmed the prevalence of aerosols classified as “polluted dust”. Finally, we encountered one special feature in the Russian aerosol mix as we observed with good confidence an unusual aerosol layer displaying both a very high LR (96 sr) and a very high PDR (20%), even though both features make it difficult to identify the aerosol type.
1
A mobile Raman lidar surveyed aerosol optical properties across 11 Eurasian cities during a roughly 10,000 km journey from Paris to Ulan-Ude.
2
CALIOP observations confirmed that “polluted dust” predominated over the surveyed Russian cities, while one unusual layer combined very high lidar ratio (96 sr) and particle depolarization (20%).
3
Lower lidar ratios of 38–50 sr above two medium-sized Siberian cities and an isolated plume suggested a larger terrigenous-aerosol contribution in smaller cities.
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Particle depolarization increased slightly from European to Russian cities, attributed to greater coarse terrigenous dust from degraded roads and unvegetated surfaces; Paris-to-Moscow values rose by 1.7%.
5
Urban pollution particles showed broadly homogeneous lidar ratios, with no longitude dependence and most 355-nm values between 67 and 96 sr.

Urban aerosol particles and mixtures in the planetary boundary or residual layer across 11 Eurasian cities from France to Siberia

Spatial variability and composition-related behavior of aerosol optical properties, specifically the 355-nm lidar ratio and particle depolarization ratio

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2017-09-22
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Elsa Dieudonné
Patrick Chazette
Fabien Marnas
Julien Totems
Xiaoxia Shang
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