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提高褐铁矿选矿金属回收率的生产实践
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作者 应磊 黄阳 +3 位作者 黄松 徐长文 钱建 桂志凯 《江西冶金》 2016年第4期9-10,17,共3页
通过优化生产工艺流程优先分选磁性铁,减少了磁铁矿等物质对高梯度磁介质的堵塞现象,并使褐铁矿金属回收率从55.24%提高至55.63%,同时新增了磁铁精粉产品,增加了矿山效益。
关键词 褐铁矿选矿 金属回收率 磁铁精粉
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Recovering limonite from Australia iron ores by flocculation-high intensity magnetic separation 被引量:5
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作者 罗立群 张泾生 余永富 《Journal of Central South University of Technology》 EI 2005年第6期682-687,共6页
Successful recovery of limonite from iron fines was achieved by using flocculation-high intensity magnetic separation (FIMS) and adding hydrolyzed and causticized flocculants according to the characteristic of iron ... Successful recovery of limonite from iron fines was achieved by using flocculation-high intensity magnetic separation (FIMS) and adding hydrolyzed and causticized flocculants according to the characteristic of iron fines. The separation results of the three iron samples are as follows: iron grade 66.77%- 67.98% and the recovery of iron 69.26%-70.70% by the FIMS process with flocculants. The comparative results show that under the same separation conditions the F1MS process can effectively increase the recovery of iron by 10. 97%- 15.73%. The flowsheet results confirm the reliability of the process in a SHP high intensity magnetic separator. The concentrate product can he used as raw materials for direct reduction iron-smelting. The hydrolyzed and causticized flocculants can selectively flocculate fine feebly-magnetic iron mineral particles to increase their apparent separation sizes. The larger the separation size, the stronger the magnetic force. By comparing the separation results of the three samples it is found that among the three samples the higher the limonite content, the better the separation result. This means that the separation result relates closely to the flocculation process and the adding pattern of the flocculant. 展开更多
关键词 Australia iron ores FLOCCULATION high intensity magnetic separation LIMONITE
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