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Fe extraction from high-silicon and aluminum cyanide tailings by pretreatment of water leaching before magnetic separation 被引量:11
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作者 张亚莉 李怀梅 于先进 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第4期1165-1173,共9页
Pretreatment of high content of Si- and Al-containing cyanide tailings by water leaching to remove some impurities, such as the major impurities minerals of Si and A1, as well as its effect on Fe extraction in the wat... Pretreatment of high content of Si- and Al-containing cyanide tailings by water leaching to remove some impurities, such as the major impurities minerals of Si and A1, as well as its effect on Fe extraction in the water leaching process was investigated. The effects of different parameters on iron recovery were studied, and the reaction parameters were proposed as follows: sodium carbonate content of 30%, water leaching at 60 ~C for 5 min, liquid/solid ratio of 15:1, and exciting current of 2 A. Under these optimal conditions, magnetic concentrate containing 59.11% total iron and a total iron recovery rate of 76.12% was obtained. In addition, the microstructure and phase transformation of the process of water leaching were studied by X-ray powder diffraction technique (XRD), Electronic image of backscattering (BEI), X-ray fluorescence (XRF), and energy dispersive spectrometry (EDS). The results indicate that the soluble compound impurities generated in the roasting process are washed out, and the dissoluble substances enter into nonmagnetic materials by water leaching, realizing the effective separation of impurities and Fe. 展开更多
关键词 water leaching cyanide tailings grade of magnetic concentrate recovery rate of iron yield of magnetic concentrate
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磁选工艺流程的改造
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作者 冉记东 《矿业快报》 2000年第15期18-20,共3页
详细介绍了寿王坟铜矿选矿厂近几年来为适应矿石性质的变化,稳定提高铁精矿质量,在工艺流程改造方面取得的显著成效。实践证明,采用铁粗精二次再磨工艺,使铁精品位稳定在60%以上。
关键词 矿石 嵌布粒度 工艺流程 铁精品位 磁选
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Magnetizing roast and magnetic separation of iron in rare-earth tailings 被引量:2
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作者 杨合 荣宜 +4 位作者 韩冲 唐荣 薛向欣 李勇 李英楠 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期1899-1905,共7页
Magnetic separation of iron in rare-earth tailings was achieved by magnetizing roast process with coal as reductant. Effects of the temperature, carbon to oxygen ratio, and cooling type on magnetic susceptibility and ... Magnetic separation of iron in rare-earth tailings was achieved by magnetizing roast process with coal as reductant. Effects of the temperature, carbon to oxygen ratio, and cooling type on magnetic susceptibility and composition of rare-earth tailings were investigated. The results show that roast conditions with the temperature of 650℃, carbon to oxygen ratio of 3.85, and holding time of 2.5 h are in favor of reduction of Fe_2O_3 to Fe_3O_4 when the roasted rare-earth tailings is cooled along with furnace. Under these roast conditions, magnetic susceptibility of rare-earth tailings is 2.36 that is very close to theoretical value(2.33). However, magnetic separation results of iron in rare-earth tailings cooled along with furnace are not satisfactory. Through comparing magnetic separation results of iron in rare-earth tailings cooled by different ways, it is found that water cooling is more favored of magnetic separation of iron in the roasted rare-earth tailings than furnace cooling and air cooling. Grade and recovery of iron in concentrate from rare-earth tailings cooled by water are 45.00%-49.00% and 65.00%-77.50%, respectively. 展开更多
关键词 rare-earth tailings IRON magnetizing roast magnetic separation iron grade iron recovery
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