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Reverse cationic flotation of iron ores with complex silicate gangue minerals

机译:铁矿石的逆阳离子浮选硅酸盐煤矸石矿物质

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Froth flotation of iron ores is one of the most widely used methods to upgrade iron ore into high-grade concentrates. In recent years, reverse cationic flotation of iron ores has been specifically the subject of several studies. Since quartz is the most common gangue mineral in iron ores, understanding the behaviour of this mineral was the main target of the majority of such studies. However, with the depletion of mineral deposits considered rich and easy to process, it has become more common to find iron ores with complex gangue minerals, which are composed not only of quartz but by a variety of silicates. The mineralogical composition of the ore is an important factor for determining reagents and mineral processing parameters. The mineralogical suite of an ore also presents a paramount role for operational optimisation of any given flotation process. Some studies were performed with different types of amphiboles and other Fe-bearing silicates, for example, but the influence of the mineralogical nature of these silicates in reverse cationic flotation has not been fully explored and will be discussed here. Changes in the traditionally used reagent scheme for reverse cationic flotation, generally including alkaline pH values, polysaccharides as depressant (mainly starches) and primary ether amines and diamines, are expected when dealing with iron ores with complex silicate gangue composition.
机译:铁矿石的泡沫浮选是将铁矿石升级为高级浓缩物的最广泛使用的方法之一。近年来,铁矿石的逆向阳离子浮选是几项研究的主题。由于石英是铁矿石中最常见的煤矸石矿物,了解该矿物的行为是大多数此类研究的主要目标。然而,随着矿物沉积物的耗尽被认为是富含且易于过程的矿物质,发现具有复杂的甘蓝矿物质的铁矿石变得更加常见,这不仅包括石英,而且由各种硅酸盐组成。矿石的矿物学组合物是确定试剂和矿物加工参数的重要因素。矿石的矿物学套件也为任何给定的浮选过程的操作优化提供了最重要的作用。例如,使用不同类型的倒像硅酸盐和其他Fe含硅酸盐进行一些研究,但是在逆阳离子浮选中,这些硅酸盐的矿物学性质的影响尚未得到充分探索,并将在此进行讨论。在与复合硅酸盐膨胀叶组合物处理铁矿石的情况下,通常包括碱性pH值,通常包括碱性pH值,通常包括碱性pH值,多糖(主要是淀粉)和初级醚胺和二胺的变化。

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