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Sensitivity and Contribution of Organic Aerosols to Aerosol Optical Properties Based on Their Refractive Index and Hygroscopicity

机译:基于其折射率和吸湿性的有机气溶胶对气溶胶光学特性的敏感性和贡献

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Organic carbon (OC) accounts for a large fraction of particulate matter. Since many atmospheric organic compounds have different optical properties, it is difficult to determine the optical properties of OC accurately. In particular, hygroscopicity and light absorption of OC are important factors in understanding the aerosol optical properties. In this study, the sensitivity of organic carbon (OC) to aerosol optical properties was tested. Both the refractive index and the hygroscopicity of OC were considered. Based on the filter-based monthly averaged sampling measurement data from an intensive observation site in Seoul, Korea, the contribution of each component on the aerosol optical properties was estimated. The aerosol optical properties were simulated by combining the aerosol dynamic model for polydispersed aerosols with an optical properties model based on Mie code. The optical properties were compared with the AERONET Aerosol Optical Thickness (AOT) measurement data. In order to estimate the contribution of the light absorption and hygroscopicity of organic carbon (OC) on the optical properties of the aerosols, a sensitivity test was conducted with different imaginary refractive indices and OC hygroscopic growth factors. The results show that mass absorption efficiency can be fitted linearly as the imaginary refractive index increases. This means that one can estimate the mass absorption efficiency of OC as a function of the imaginary refractive index. The results also show that mass extinction and absorption efficiency decrease as the hygroscopic factor of OC increases because of the increase in water content. The contribution of OC to the mass extinction efficiency, however, depends on the chemical composition of other aerosol mixtures and hence, more comprehensive studies are required in this regard.
机译:有机碳(OC)占颗粒物的很大一部分。由于许多大气有机化合物具有不同的光学性质,因此难以准确确定OC的光学性质。尤其是,OC的吸湿性和光吸收是理解气溶胶光学特性的重要因素。在这项研究中,测试了有机碳(OC)对气溶胶光学特性的敏感性。 OC的折射率和吸湿性都被考虑了。基于来自韩国首尔的一个密集观测站点的基于滤波器的每月平均采样测量数据,估算了每种成分对气溶胶光学特性的贡献。通过将多分散气溶胶的气溶胶动力学模型与基于Mie代码的光学特性模型相结合,对气溶胶的光学特性进行了模拟。将光学性能与AERONET气溶胶光学厚度(AOT)测量数据进行了比较。为了估算有机碳(OC)的吸光度和吸湿性对气溶胶光学特性的贡献,在不同的虚构折射率和OC吸湿性生长因子下进行了敏感性测试。结果表明,随着虚拟折射率的增加,质量吸收效率可以线性拟合。这意味着人们可以根据虚构的折射率来估算OC的质量吸收效率。结果还表明,由于水分的增加,OC的吸湿系数增加,质量消光和吸收效率降低。但是,OC对消光效率的贡献取决于其他气溶胶混合物的化学组成,因此,在这方面需要进行更全面的研究。

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