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The influence of different black carbon and sulfate mixing methods on their optical and radiative properties

机译:不同的黑碳和硫酸盐混合方法对其光学和辐射性能的影响

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摘要

Three different internal mixing methods (Core-Shell, Maxwell-Garnett, and Bruggeman) and one external mixing method are used to study the impact of mixing methods of black carbon (BC) with sulfate aerosol on their optical properties, radiative flux, and heating rate. The optical properties of a mixture of BC and sulfate aerosol particles are considered for three typical bands. The results show that mixing methods, the volume ratio of BC to sulfate, and relative humidity have a strong influence on the optical properties of mixed aerosols. Compared to internal mixing, external mixing underestimates the particle mass absorption coefficient by 20-70% and the particle mass scattering coefficient by up to 50%, whereas it overestimates the particle single scattering albedo by 20-50% in most cases. However, the asymmetry parameter is strongly sensitive to the equivalent particle radius, but is only weakly sensitive to the different mixing methods. Of the internal methods, there is less than 2% difference in all optical properties between the Maxwell-Garnett and Bruggeman methods in all bands; however, the differences between the Core-Shell and Maxwell-Garnett/Bruggeman methods are usually larger than 15% in the ultraviolet and visible bands.
机译:三种不同的内部混合方法(Core-Shell,Maxwell-Garnett和Bruggeman)和一种外部混合方法用于研究黑碳(BC)与硫酸盐气溶胶的混合方法对其光学性质,辐射通量和加热的影响率。对于三个典型谱带,考虑了BC和硫酸盐气溶胶颗粒混合物的光学性能。结果表明,混合方法,BC与硫酸盐的体积比以及相对湿度对混合气溶胶的光学性能有很大影响。与内部混合相比,外部混合将粒子质量吸收系数低估了20-70%,将粒子质量散射系数低估了多达50%,而在大多数情况下,将粒子单散射反照率高估了20-50%。但是,不对称参数对等效粒子半径非常敏感,而对不同的混合方法仅敏感。在内部方法中,所有波段的Maxwell-Garnett和Bruggeman方法之间的所有光学性质差异都小于2%;但是,Core-Shell方法与Maxwell-Garnett / Bruggeman方法之间的差异通常在紫外线和可见光波段大于15%。

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