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Application of a Novel Cationic Collector in Reverse Flotation Beneficiation of Oolitic Haematite Ore

机译:一种新型阳离子收集器在鲕状血液矿石逆转浮选中的应用

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Oolitic hematite is one of the most refractory iron ores with complicate mineral compositions and abundant reserves in China. The hematite and limonite in the ore integrate closely with fine particles of collophanite,quartz,chamosite,calcite and chalcedony to form concentric ring structure,making the separation of the minerals extremely difficult. Since the tiny hematite crystal can not be liberated during the grinding of the ore the beneficiation can only be accomplished by recovering iron minerals aggregate with hematite as the major component. The previous research results showed that reverse flotation with fatty acid collectors could remove liberated phosphate minerals but not the quartz,chlorite and silicate minerals. This was because the gangue minerals such as quartz were contaminated by iron on the surface and there were high content of iron in some silicate minerals and high content of silicon in iron minerals,causing the floatability difference between the silicon and the iron minerals very small and thus the separation efficiency very low. Experiments were conducted to beneficiate the ore by reverse flotation with different cationic collectors. The results indicated that the flotation separation efficiency with most cationic collectors such as dodecylamine,ether amine,GE601 or GE609 was not satisfactory. However,a novel cationic collector for silicon removal,EM506 was found to be specifically selective to separate the gangue minerals from the iron ore with an increase of TFe grade from 49% to more than 58% and a recovery of TFe greater than 96%,which provided a promising approach for the beneficiation of the refractory oolitic hematite ore.
机译:鲕粒赤铁矿是最难治性的铁矿石之一,具有复杂的矿物组合物和中国的丰富储备。矿石中的赤铁矿和褐矿与细颗粒的细颗粒紧密地整合在一起,石英,晶片,方解石和氨化颗粒形成同心环结构,使矿物的分离非常困难。由于在矿石的研磨过程中不能释放微小的赤铁矿晶体,因此只能通过将铁矿物聚集在赤铁矿作为主要成分来实现的矿物。以前的研究结果表明,脂肪酸收集器的反向浮选可以除去释放磷酸盐矿物,但不是石英,氯酸盐和硅酸盐矿物质。这是因为石英如石英的煤矸石矿物质被表面污染,并且在一些硅酸盐矿物和铁矿物中的硅含量高的铁含量高,导致硅和铁矿物之间的浮动性差异非常小,并且因此,分离效率非常低。进行实验以通过与不同阳离子收集器的反向浮选将矿石受益。结果表明,具有大多数阳离子收集器(如十二烷胺,醚胺,GE601或GE609)的浮选分离效率并不令人满意。然而,发现用于硅去除的新型阳离子收集器,EM506是特别选择性,以将铁矿石与TFE等级的增加分离,从49%增加到超过58%,TFE的回收率大于96%,这为难治性鲕粒颗粒矿石的益处提供了有希望的方法。

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