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Development of Magnetic Processing Circuit for Oxidized Iron Ore after Magnetic Roasting

机译:磁性焙烧后氧化铁矿石磁加工电路的研制

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摘要

The process of wet magnetic separation of oxidized ore from the deposit of Abail, Republic of Kazakhstan, is studied. Kinetics of roasted product milling is analyzed, and the optimal size is recommended for the fist stage of milling as -0.071 mm at the content of 55-60%. The accomplished magnetic analysis of different size products shows that the decrease in size causes no increment of iron in the magnetic product and iron is at the level of 63.0 mass%. The scanning electron microscopy reveals that the roasted and magnetic products contain floccules of gangue and magnetite particles which transfer into magnetic fraction and worsen its quality. Two schemes are proposed for decomposition of floccules: multistage desliming with regard to sedimentation velocity in liquid medium and attrition with deffloculation agent. It is recommended to apply the two-stage circuit with milling, desliming and wet magnetic separation, which allows production of iron concentrate with iron content of 67% at recovery of 76.5%.
机译:研究了来自哈伊亚共和国押金的氧化矿石湿磁性分离的过程,研究。分析了烤制品铣削的动力学,建议为铣削的拳头阶段为-0.071毫米,含量为55-60%。不同尺寸产品的完成磁性分析表明,磁性产品中的尺寸下降不会导致铁的递增,铁处于63.0质量%的水平。扫描电子显微镜揭示了烤和磁性产品含有煤矸石和磁铁矿颗粒的絮凝物,其转移到磁性分数中并使其质量恶化。提出了两种方法,用于分解Floccules:多级脱近关于液体介质中的沉降速度和Deffloculation剂的磨损。建议用铣削,去摄和湿磁性分离施加两级电路,允许在回收率76.5%时生产67%的铁含量。

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