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Modelling the mineralogical composition and solubility of mineral dust in the Mediterranean area with CHIMERE 2017r4

机译:用Chimere 2017R4建模矿物质粉尘在地中海地区矿物粉尘的溶解度

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Modelling of mineral dust is often done using one single mean species. But for biogeochemical studies, it could be useful to access to a?more detailed information on differentiated mineral species and the associated chemical composition. Differentiating between mineral species would also induce different optical properties and densities and then different radiative impact, transport and deposition. In this study, the mineralogical differentiation is implemented in the CHIMERE regional chemistry-transport model, by using global databases. The results show that this implementation does not change the results much in terms of aerosol optical depth, surface concentrations and deposition fluxes. But the information on mineralogy, with a?high spatial (a?few kilometres) and temporal (1 h) resolution, is now available and is ready to be used for future biogeochemical studies.
机译:矿物粉尘的建模通常使用单一平均物种进行。但对于生物地球化学研究,可以使用关于分化的矿物质和相关化学成分的更详细信息可能是有用的。矿物质之间的区分还会诱导不同的光学性质和密度,然后辐射辐射冲击,运输和沉积。在这项研究中,矿物学分化通过使用全球数据库在Chimere区域化学传输模型中实施。结果表明,该实现不会在气溶胶光学深度,表面浓度和沉积助熔剂方面改变结果。但是,矿物学的信息,现在可以使用?高空间(a?几公里)和时间(1 h)分辨率,并准备用于将来的生物地球化学研究。

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