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Carbothermal Reduction, Melting Separation, and Structural Analysis of Carbon-bearing Rare Earth Iron Ore Pellets

机译:Carbothotmal降低,熔化分离和碳稀土铁矿石颗粒的结构分析

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The slag of rare earth Bayan Obo complex iron ore (REBOCIO) after direct reduction and melting contains a lot of rare earth elements (REEs). In this work, the isothermal reduction and melting separation experiments of REEs-bearing iron carbon composite pellets and the detailed characterization of rare earth (RE) slag were conducted, with the aim at developing knowledge of the reduction mechanism and the behavior of REEs during the direct reduction and melting process. The results indicate that the pellets can be optimally reduced at 1200°C for 15 min with a C/O ratio of 1.2. The RE-containing phases differ depending on the reaction conditions. When the temperature is relatively low at 1100°C, the major RE phase in the slag is Ce_(4.67) (Si O_(4))_(3) O; while (Ca, Ce, La)_(5)(SiO_(4))_(6)F becomes the dominant RE phase in the slag at 1400°C. The main crystalline phase in the air-cooling slag are cuspidine (Ca4Si_(2)O_(7)F_(2)), (Ca, Ce, La)_(5)(SiO_(4))_(6)F and fluorite (CaF_(2)). The particle size of the RE phase increases as the cooling rate decreases. In the case of furnace cooling, the RE phase in the slag has a more complete structure, namely hexagonal prismatic. And the RE phase is hexagonal system with space group P 63/m and unitcell parameters a = 9.5908(3) ?, b = 9.5908(3) ?, c = 7.0268(2) ?, β = 90 (3)°, and V = 559.75(4) ?~(3).
机译:直接减少和融化后,稀土Bayan Obo复杂铁矿石(Rebocio)含有很多稀土元素(REES)。在这项工作中,进行了REES-轴承铁碳复合颗粒的等温降低和熔化分离实验和稀土(RE)渣的详细表征,目的是制定减排机制和REES行为的知识直接减少和熔化过程。结果表明,粒料可以在1200℃下最佳地减小15分钟,C / O比为1.2。含重次相取决于反应条件。当温度相对较低1100°C时,渣中的主要再相是CE_(4.67)(Si O_(4))_(3)O;而(CA,Ce,La)_(5)(SiO_(4))_(6)F在1400°C下成为炉渣中的主导再相。空气冷却渣中的主要结晶相是辛啶(CA4SI_(2)O_(7)F_(2)),(CA,CE,LA)_(5)(SIO_(4))_(6)F和萤石(CAF_(2))。随着冷却速率降低,再相的粒径增加。在炉子冷却的情况下,炉渣中的再相具有更完整的结构,即六边形棱柱形。并且再见是具有空间组P 63 / m和闭合条件A = 9.5908(3)α,C = 7.0268(2)α,β= 90(3)的六边形系统。 °,v = 559.75(4)?〜(3)。

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