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Mineralogical Analysis of a Chrome Ore from South Africa

机译:南非铬矿的矿物学分析

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The investigations on chemical composition, mineral composition, embedded figures, texture and microstructure of chrome ores were conducted systematically by various analysis methods such as chemical analysis, XRF, SEM, and MLA 650 system. The results showed that there are 92.66% chromite and a small amount of chlorite and forsterite as the main mineral compositions, the content of quartz is very low. Elements as Cr and Fe are almost all present in chromite. The content of Cr_2O_3 is 41.84% and Cr_2O_3/FeO is 2.1. The main elements in the chromite are Cr, Fe, Mg, Al, O; the main elements in the chlorite are Mg, Al, Si, O and a small amount of Fe; the main elements in the forsterite are Mg, Si and O. On the basis of clarifying the mineralogical characteristics, to produce high-grade alloy, this ore should not be separately put into the submerged arc furnace without pretreating. However, it also seems to be difficult to separate the gangue compositions by the conventional physical upgrading methods, such as magnetic separation and gravity separation. So, chemical mineral processing should be taken into account.
机译:通过各种分析方法,如化学分析,XRF,SEM和MLA 650系统,系统地进行了铬矿石的化学成分,矿物成分,嵌入图形,织构和微观结构的研究。结果表明,铬铁矿中主要成分为亚铬铁矿92.66%,亚氯酸盐和镁橄榄石为少量,石英含量很低。铬和铁等元素几乎都存在于亚铬酸盐中。 Cr_2O_3的含量为41.84%,Cr_2O_3 / FeO的含量为2.1。亚铬酸盐中的主要元素是Cr,Fe,Mg,Al,O;亚氯酸盐中的主要元素是Mg,Al,Si,O和少量的Fe。镁橄榄石中的主要元素为Mg,Si和O。在阐明矿物学特征以生产高品位合金的基础上,不得未经预处理就将该矿石单独放入埋弧炉中。然而,似乎还难以通过常规的物理升级方法,例如磁分离和重力分离来分离脉石成分。因此,应考虑化学矿物加工。

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