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What is the real role of iron oxides in the optical properties of dust aerosols?

机译:氧化铁在粉尘气溶胶光学特性中的真正作用是什么?

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摘要

Iron oxide compounds constitute an important component of mineral dust aerosols. Several previous studies have shown that these minerals are strong absorbers at visible wavelengths and thus that they play a critical role in the overall climate perturbation caused by dust aerosols. When compiling a database of complex refractive indices of possible mineral species of iron oxides to study their optical properties, we found that uniformly continuous optical constants for a single type of iron oxide in the wavelength range between 0.2 and 50 mu m are very scarce, and that the use of hematite to represent all molecular or mineral iron-oxides types is a popular hypothesis. However, the crucial problem is that three continuous data sets for complex refractive indices of hematite are employed in climate models, but there are significant differences between them. Thus, the real role of iron oxides in the optical properties of dust aerosols becomes a key scientific question, and we address this problem by considering different refractive indices, size distributions and more logical weight fractions and mixing states of hematite. Based on the microscopic observations, a semi-external mixture that employs an external mixture between Fe aggregates and other minerals and partly internal mixing between iron oxides and aluminosilicate particles is advised as the optimal approximation. The simulations demonstrate that hematite with a spectral refractive index from Longtin et al. (1988) shows approximately equal absorbing capacity to the mineral illite over the whole wavelength region from 0.55 to 2.5 mu m, and only enhances the optical absorption of aerosol mixture at lambda < 0.55 mu m. Using the data set from Querry (1985) may overestimate the optical absorption of hematite at both visible and near-infrared wavelengths. More laboratory measurements of the refractive index of iron oxides, especially for hematite and goethite in the visible spectrum, should therefore be taken into account when assessing the effect of mineral dust on climate forcing.
机译:氧化铁化合物是矿物粉尘气溶胶的重要成分。先前的几项研究表明,这些矿物在可见光波长下是强吸收剂,因此,它们在由粉尘气溶胶引起的整个气候扰动中起着关键作用。在编制可能的氧化铁矿物质的复数折射率的数据库以研究其光学性质时,我们发现单一类型的氧化铁在0.2至50μm波长范围内的均匀连续光学常数非常稀少,并且一个普遍的假设是使用赤铁矿来代表所有分子或矿物铁氧化物类型。但是,关键问题是在气候模型中使用了三个连续的赤铁矿折射率连续数据集,但是它们之间存在显着差异。因此,氧化铁在粉尘气溶胶的光学特性中的真正作用成为一个关键的科学问题,我们通过考虑不同的折射率,尺寸分布以及更合理的重量分数和赤铁矿的混合态来解决这个问题。基于微观观察,建议采用半外部混合物作为最佳近似,该混合物采用铁聚集体与其他矿物质之间的外部混合物以及氧化铁和硅铝酸盐颗粒之间的部分内部混合。模拟表明,赤铁矿具有朗廷等人的光谱折射率。 (1988年)显示在整个波长范围从0.55到2.5微米对伊利石矿物的吸收能力大致相等,并且仅在λ<0.55微米时提高了气溶胶混合物的光吸收。使用Querry(1985)的数据集可能会高估赤铁矿在可见光和近红外波长的光吸收。因此,在评估矿物粉尘对气候强迫的影响时,应考虑更多实验室测量铁氧化物的折射率,尤其是可见光谱中的赤铁矿和针铁矿的折射率。

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