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Characterization of Band-E Narges magnetite iron ore for mineral processing

机译:Band-E Narges磁铁矿铁矿石的表征,用于矿物加工

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The Band-e Narges deposit is located about 70 km northeast of the city of Badrud, northern Isfahan province. Band-E Narges ore deposit is mining for magnetite. To release valuable minerals, crushing and grinding implemented for separation ore from the gangue. Magnetic separation and flotation methods for upgrading magnetite iron ore were carried out in different experimental conditions with varied parameters. The particle size of the initial content was 74 microns for flotation, and 150 microns for magnetic separation. The initial samples, with the iron grade of 43.4% and sulfur of 1.9%, are individually subjected to upgrading by floatation and magnetic separation during which the affecting parameters for each method were optimized. The improvement in the optimal condition for magnetic separation culminated in 60.85% for the iron grade, 85.21% iron for recovery and 1.08% for sulfur content. The upgrading by floatation in the optimal mode produced 60.02% iron grade, 80.41% iron recovery and 0.95% sulfur content. To determine the best method for the pre-concentration stage of ore, the content gained from each technique passed reclining for grad improvement. The final content obtained from the magnetic separation of was undergone the floatation test yielded to a content with 64.3% iron grade, 77.15% iron recovery and 0.7% sulfur content. The use of magnetic separation as a pre-concentration stage for floatation method is proposed as an economical method for improving the grade of the iron and reduce the sulfur content and to avoid the high cost of grinding, which is costly part of processing procedures.
机译:Band-e Narges矿床位于伊斯法罕省北部的Badrud市东北约70公里处。 Band-E Narges矿床正在开采磁铁矿。为了释放有价值的矿物,需要进行破碎和磨碎以从脉石中分离矿石。在不同的实验条件下,采用不同的参数进行了磁选和浮选提质磁铁矿铁矿的方法。浮选的初始内容物的粒径为74微米,磁选为150微米。铁含量为43.4%,硫含量为1.9%的初始样品分别通过浮选和磁选进行升级,在此期间,每种方法的影响参数均得到了优化。磁选最佳条件的改善最终达到了铁品位的60.85%,回收铁的85.21%和硫含量的1.08%。在最佳模式下通过浮选进行提质可产生60.02%的铁品位,80.41%的铁回收率和0.95%的硫含量。为了确定矿石预浓缩阶段的最佳方法,从每种技术中获得的含量都经过倾斜调整以提高品位。通过磁分离获得的最终含量经过浮选测试,得到的铁含量为64.3%,铁回收率为77.15%,硫含量为0.7%。提出使用磁选作为浮选法的预浓缩阶段,作为提高铁的品位并降低硫含量并避免高研磨成本的经济方法,这是加工过程中昂贵的一部分。

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