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海外低品磁铁矿资源开发实践与思考
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作者 谷丽丽 李明彦 《中国矿业》 北大核心 2011年第4期11-13,23,共4页
通过海外低品磁铁矿资源开发工作实践,总结了全球低品磁铁矿贸易资源的分布及特点,指出了资源开发工作的难点,提出了保障矿山企业低品磁铁矿原料供应的资源开发建议和策略。
关键词 低品磁铁矿 铁矿 资源开发
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Separation of hematite from banded hematite jasper(BHJ) by magnetic coating 被引量:3
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作者 Subhashree Singh H.Sahoo +2 位作者 S.S.Rath B.B.Palei B.Das 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第2期437-444,共8页
The separation of iron oxide from banded hematite jasper(BHJ) assaying 47.8% Fe, 25.6% Si O2 and 2.30%Al2O3 using selective magnetic coating was studied. Characterization studies of the low grade ore indicate that bes... The separation of iron oxide from banded hematite jasper(BHJ) assaying 47.8% Fe, 25.6% Si O2 and 2.30%Al2O3 using selective magnetic coating was studied. Characterization studies of the low grade ore indicate that besides hematite and goethite,jasper, a microcrystalline form of quartzite, is the major impurity associated with this ore. Beneficiation by conventional magnetic separation technique could yield a magnetic concentrate containing 60.8% Fe with 51% Fe recovery. In order to enhance the recovery of the iron oxide minerals, fine magnetite, colloidal magnetite and oleate colloidal magnetite were used as the coating material. When subjected to magnetic separation, the coated ore produces an iron concentrate containing 60.2% Fe with an enhanced recovery of56%. The AFM studies indicate that the coagulation of hematite particles with the oleate colloidal magnetite facilitates the higher recovery of iron particles from the low grade BHJ iron ore under appropriate conditions. 展开更多
关键词 banded hematite jasper ore selective coating oleate colloidal magnetite magnetic separation atomic force microscopy
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