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Dynamics of optical-microphysical characteristics of smokes from Siberian wildfires in the Big Aerosol Chamber at the stages of smoke generation and ageing

机译:烟雾发电阶段的西伯利亚野火中吸烟的烟雾的光学 - 微物理特征动态

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The optical-microphysical characteristics of smokes from forest combustible materials with different contributions of flaming and smoldering combustion of biomass with 48-h ageing under dark conditions have been studied in the Big Aerosol Chamber of the Institute of Atmospheric Optics (IAO). The dynamics of spectral dependences of aerosol extinction coefficients at wavelengths of 0.45-3.9 μm, scattering and absorption coefficients at 0.46-0.63 μm, aerosol extinction, scattering, and absorption Angstrom exponents, Black Carbon (BC) mass concentration and relative BC content, and single scattering albedo was analyzed. Characteristics of model smokes have been compared with data for smoke plumes from remote Siberian wildfires to assess the mean values of the parameter of mixture of flaming/smoldering modes closest to the actual pattern of absorption properties of remote wildfires. A system for imitation of solar UV irradiation have been deployed in the Big Aerosol Chamber (BAC), and test experiments on generation of secondary organic aerosol under UV irradiation of the near-surface air pumped into BAC have been conducted.
机译:在大气光学研究所(IAO)大气溶液(IAO)的大气溶胶室,研究了森林可燃材料的森林可燃材料的不同贡献,并在黑暗条件下进行了48小时衰老的燃烧燃烧。波长在0.45-3.9μm,散射和吸收系数下的气溶胶消光系数的谱依赖性的动态,散射和吸收系数为0.46-0.63μm,气溶胶消光,散射和吸收抗埃指数,黑碳(BC)质量浓度和相对BC含量,和分析了单散射Albedo。与遥控西伯利亚野火的烟雾羽毛的数据进行了比较模型吸烟的特征,以评估最接近远程野火的吸收特性的实际吸收特性模式的燃烧/闷烧模式的混合物参数的平均值。已经在大气溶胶室(BAC)中展开了一种模仿太阳能UV照射的系统,并进行了在泵入BAC中的近表面空气的UV照射下产生二次有机气溶胶的测试实验。

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