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极贫赤铁矿石分粒级预选抛尾试验
引用本文:于泽龙,朱巨建,郭小飞,李博琦.极贫赤铁矿石分粒级预选抛尾试验[J].金属矿山,2018,47(12):80-83.
作者姓名:于泽龙  朱巨建  郭小飞  李博琦
作者单位:辽宁科技大学矿业工程学院,辽宁 鞍山 114051
摘    要:鞍山地区齐大山极贫赤铁矿石TFe品位为18.25%,金属矿物以赤铁矿为主,脉石矿物以石英为主。为提高矿石预选效果,对其进行了分粒级预选抛尾工艺试验。采用筛孔尺寸为3 mm的筛子筛分后,在双辊转速为1.25 m/s条件下,采用双辊强磁预选磁选机对3~15 mm粒级进行干式强磁预选,预选精矿采用实验室型高压辊磨机细碎至P80为1.62 mm,与筛下-3 mm粒级混合,采用SCG-150型湿式永磁高梯度磁选机进行湿式预选,预选精矿TFe品位可达31.44%,作业回收率83.03%,对原矿回收率为75.60%,抛除总产率为56.12%、铁品位为8.19%的尾矿。试验结果为极贫赤铁矿资源的开发和利用提供了研究基础。

关 键 词:极贫赤铁矿石  分粒级预选  超细碎  永磁强磁选

Classification Pre-concentration Discarding Test of Extremely Poor Hematite Ore
Yu Zelong,Zhu Jujian,Guo Xiaofei,Li Boqi.Classification Pre-concentration Discarding Test of Extremely Poor Hematite Ore[J].Metal Mine,2018,47(12):80-83.
Authors:Yu Zelong  Zhu Jujian  Guo Xiaofei  Li Boqi
Affiliation:School of Mining Engineering,Liaoning University of Science and Technology, Anshan 114051,China
Abstract:There is 18.25% TFe in the extremely poor hematite from Qidashan iron ore in Anshan area, main metal mineral is hematite, and the gangue mineral is mainly quartz. In order to improve the pre-selection index, a classification pre-selection tail-splitting process test was carried out. After screening with sieve size of 3 mm, dry-type high intensity magnetic pre-selection of 3~15 mm fractions was carried out by a two-roller high intensity magnetic preselection magnetic separator at double-roller speed of 1.25 m/s. The pre-concentrate was finely crushed to P80 of 1.62 mm by laboratory high pressure roller mill, and then mixed with the -3 mm size fraction of under sieve, and wet-preselected by SCG-150 wet permanent magnetic high gradient magnetic separator. The pre-selected concentrate TFe grade can reach 31.44%. The recovery rate of the operation is 83.03%, the recovery rate to the original ore is 75.60%, and the tailings with a yield rate of 56.12% and an iron grade of 8.19% are discarded. The test results provide a research basis for the development and utilization of extremely poor hematite resources.
Keywords:Extremely poor hematite  Classification pre-concentration  Ultra-fine comminution  Permanent high intensity magnetic separation  
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