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Processing of Subsea Massive Sulfide Ores by Flotation - Similarity and Features with Terrestrial Ores

机译:通过浮选的液体硫化物矿石加工 - 陆地矿石的相似性和特征

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Subsea massive sulfide deposits have particular mineralogical compositions and textural features differentiating them from onshore ore. When extracted from salty water and exposed to the air, massive sulfide samples strongly oxidise and soon become covered by thin layers of iron, copper and zinc-rich sulfates and oxides, as well as elemental sulfur. The textural properties vary according to the degree of maturity and the sample position within the hydrothermal deposit. ssecause of the variation of secondary mineralisation and porosity level, sea floor massive sulfides respond differently from terrestrial ore to processing methods. Froth flotation, commonly applied to separate all types of sulfides from the gangue minerals, is one possible treatment technique to process sea floor ore. Sulfide recovery rate is, in most cases, excellent (>90 per cent). However, separation of the various mineral phases is difficult to obtain even when applying known methods used for onshore ore. Moreover, the flotation behaviour decreases dramatically with time of conservation, even when the samples were stored in a confined environment. High pH range, which is a good way to depress pyrite and therefore to favour the flotation of copper and zinc sulfides, does not have the same effect on subsea ore. Consequently, careful flotation procedure should be elaborated to obtain efficient mineral separation for this specific marine ore.
机译:海底硫化物沉积物具有特定的矿物学组合物和纹理特征,将它们与陆上矿石区分开来。当从咸水中提取并暴露于空气中时,大规模的硫化物样品强烈氧化,很快被薄层的铁,铜和富含硫酸盐和氧化物覆盖,以及元素硫。纹理特性根据加热沉积物内的成熟度和样品位置而变化。 STALAAHE次级矿化和孔隙率水平的变化,海底硫化物与陆地矿石的反应不同于加工方法。泡沫浮选,常用于将所有类型的煤矸石矿物分离,是处理海底矿石的一种可能的治疗技术。在大多数情况下,硫化物回收率是优异的(> 90%)。然而,即使在施用用于陆上矿石的已知方法时,难以获得各种矿物相的分离。此外,即使当样品储存在狭窄的环境中,浮选行为随着守恒时,浮选行为显着降低。高pH范围,这是抑制黄铁矿的好方法,因此有利于铜和硫化锌的浮选,对海底矿石具有相同的效果。因此,应详细阐述仔细的浮选程序以获得该特定海洋矿石的有效矿物分离。

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