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作 者:朱德庆[1] 赵强[1] 邱冠周[1] 潘建[1] 王泽群[2] 潘常甲[2]
机构地区:[1]中南大学资源加工与生物工程学院,长沙410083 [2]铜陵化学工业集团新桥矿业有限公司,铜陵244000
出 处:《北京科技大学学报》2010年第6期713-718,共6页Journal of University of Science and Technology Beijing
基 金:湖南省国土资源厅资助项目(No.2007K02);中南大学研究生学位论文创新资助项目(No.1343-74335000021)
摘 要:针对安徽某低品位褐铁矿石,采用磁化焙烧-磁选工艺进行了实验研究,对该矿的原矿进行了岩相分析,并对磁化焙烧-磁选工艺参数进行了优化.结果表明,该矿属低磷硫的低品位褐铁矿,褐铁矿与脉石矿物的镶嵌关系较为复杂,结晶水含量高,属难选矿石.对铁品位48.01%的原矿,在850℃、内配煤5%(质量分数)的条件下,磁化焙烧15min,焙烧矿磁化率达到最佳值,褐铁矿几乎全部转化为磁铁矿,这由X射线衍射结果证实.该褐铁矿通过磁化焙烧-磁选工艺可获得品位62.94%、回收率87.99%的铁精矿.The magnetizing roasting-magnetic separation process of limonite ores from Anhui Province in east China was experimentally studied,which covers determining the mineralogy of raw ores and optimizing the magnetizing roasting-magnetic separation process parameters.It is shown that the limonite ores contain low phosphorus and sulphur and high loss on ignition (LOI);the iron minerals and gangue have complicated occurrence,indicating that the limonite ores are extraordinarily refractory iron ores.Through magnetizing roasting of raw ores assaying 48.01% Fe and blending 5% coal fines at 850℃ for 15min,the best magnetization ratio of roasted iron ores is achieved,where almost limonite is transferred to magnetite.This result was proven by X-ray diffraction.By the magnetizing roasting-magnetic separation process,an iron ore concentrate with 62.94% TFe and 87.99% recovery is produced.
分 类 号:TF046[冶金工程—冶金物理化学]
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