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Carbothermal Reduction of Boron-bearing Iron Concentrate and Melting Separation of the Reduced Pellet

机译:含硼铁精矿的碳热还原和还原粒的熔融分离

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Comprehensive utilization of low grade ludwigite is critical important for the safe supply of boron resource of China. Boron-bearing iron concentrate is the intermediate product of the ore dressing process of crude low grade ludwigite and extracting boron from it has great effect on the total boron yield. Pre-reduction of the boron-bearing iron concentrate is one of the important steps of the pyrometallurgical boron and iron separation process. The carbothermal reduction study of boron-bearing iron concentrate was carried out in the present work. The reduction rate was improved with the increasing of heating temperature and carbon content. The appropriate temperature and C/O (mole ratio of fixed carbon to reducible oxygen) were 1200 to 1300°C and 0.8 to 1.2, respectively. In addition, the microstructure and phase evolution of the pellet during the reduction process were characterized by means of SEM and XRD. The apparent activation energy of the iron oxide reduction in the composite pellet was 114.32 kJ/mol based on the first-order reaction model. The iron and slag separate well when the reduced pellets were heated at 1550°C. The B_(2)O_(3) content of the slag and the boron element content of the pig iron were 10.8 wt% and 0.74 wt%, respectively. The main minerals in the slag were olivine, kotoite, periclase and spinel after slow cooling, and the efficiency of extraction of boron (EEB) of the slag was 68.4%. The boron-rich slag and boron-bearing pig iron can be used as the raw materials for boron extraction and steel making.
机译:低品位路德维希矿的综合利用对我国硼资源的安全供应至关重要。含硼铁精矿是粗品低品位路德维希精矿选矿过程的中间产物,从中提取硼对硼的总产量有很大影响。含硼铁精矿的预还原是火法硼和铁分离过程的重要步骤之一。本工作进行了含硼铁精矿的碳热还原研究。随着加热温度和碳含量的增加,还原率提高。合适的温度和C / O(固定碳与可还原氧的摩尔比)分别为1200至1300℃和0.8至1.2。另外,通过SEM和XRD表征了颗粒在还原过程中的微观结构和相演变。基于一级反应模型,复合颗粒中氧化铁还原的表观活化能为114.32 kJ / mol。当将还原的粒料在1550℃下加热时,铁和矿渣很好地分离。炉渣的B_(2)O_(3)含量和生铁的硼元素含量分别为10.8重量%和0.74重量%。缓慢冷却后,炉渣中的主要矿物为橄榄石,科托石,钙镁石和尖晶石,炉渣中硼的提取效率为68.4%。富硼矿渣和含硼生铁可用作提取硼和炼钢的原料。

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