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TEM analysis of the internal structures and mineralogy of Asian dust particles and the implications for optical modeling

机译:亚洲粉尘颗粒内部结构和矿物的TEM分析及光学造型的影响

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Mineral dust interacts with incoming/outgoing electromagnetic radiation in the atmosphere. This interaction depends on the microphysical properties of the dust particles, including size, mineral composition, external morphology, and internal structure. Ideally all of these properties should be accounted for in the remote sensing of dust, the modeling of single-scattering properties, and radiative effect assessment. There have been many reports on the microphysical characterizations of mineral dust, but no investigations of the internal structures of individual dust particles. We explored the interiors of Asian dust particles using the combined application of focused ion beam thin-slice preparation and high-resolution transmission electron microscopy. The results showed that individual dust particles consisted of numerous mineral grains, which were organized into several types of internal structure: single and polycrystalline cores of quartz, feldspars, calcite, and amphibole often with oriented clay coatings; individual clay agglomerates of nano-thin clay platelets showing preferred to random orientations common with coarser mineral inclusions; and platy coarse phyllosilicates (muscovite, biotite, and chlorite). Micron to submicron pores were scattered throughout the interior of particles. Clays in the coatings and agglomerates were dominated by nano-thin platelets of the clay minerals of illite–smectite series including illite, smectite, and their mixed layers with subordinate kaolinite and clay-sized chlorite. Submicron iron oxide grains, dominantly goethite, were distributed throughout the clay agglomerates and coatings. Unlike the common assumptions and simplifications, we found that the analyzed dust particles were irregularly shaped with birefringent, polycrystalline, and polymineralic heterogeneous compositions. Accounting for this structural and mineralogical makeup may improve the remote sensing retrieval of dust and the evaluation of radiation effects, but will also require sophisticated single-scattering modeling. In particular, the observed internal structures of dust particles such as clay coatings, preferred orientation, embedded grains in clays, and pores, have the potential to considerably impact on the light scattering by dust particles. The distribution and size of structural components with contrasting dielectric properties, such as iron oxides, should also be explicitly accounted for.
机译:矿物粉尘与大气中的进入/输出电磁辐射相互作用。该相互作用取决于粉尘颗粒的微神科性质,包括尺寸,矿物成分,外部形态和内部结构。理想情况下,所有这些属性都应考虑到灰尘的遥感,单散射性能的建模和辐射效果评估。有很多关于矿物粉尘的微神科表征的报道,但没有对单个粉尘颗粒的内部结构的研究。我们利用聚焦离子束薄片制备和高分辨率透射电子显微镜的综合应用探索了亚洲粉尘颗粒的内部。结果表明,各种粉尘颗粒由许多矿物颗粒组成,这些颗粒组织成几种类型的内部结构:石英,长石,方解石和锥形芯的单晶和多晶芯,通常具有定向粘土涂层;纳米薄粘土血小板的单个粘土附聚物,其优选与粗矿质夹杂物共同的随机取向;和平板粗粗碱(Moscovite,Biotite和Chlorite)。微米到亚微米孔散布在整个颗粒内部。涂层和附聚物中的粘土由粘土矿物群的纳米薄血小板中的纳米薄血小板,包括illite,蒙脱石及其与下属高岭石和粘土大小的亚氯酸盐的混合层。亚微米氧化铁颗粒,显着的碎片,分布在整个粘土附聚物和涂层中。与共同的假设和简化不同,我们发现分析的粉尘颗粒与双折射,多晶和聚合物非均相组合物不规则地形状。占该结构和矿物学的核算可以改善遥感检索的灰尘和辐射效应的评估,但也需要复杂的单散射建模。特别地,观察到诸如粘土涂层,优选取向,粘土中的嵌入颗粒的灰尘颗粒的内部结构具有对粉尘颗粒的光散射相当影响。还应明确地占用具有对比介电性能的结构部件的分布和尺寸,例如氧化铁。

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