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Experimental Investigation on Direct Reduction Followed by Magnetic Separation for Nb2O5-Bearing Ore

机译:Nb 2 O 5 含矿砂直接还原再磁选的实验研究

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Recently a special attention is being paid on the ferroniobium production worldwide, especially in China. In present work, direct reduction followed by magnetic separation for Nb_(2)O_(5)-bearing ore is investigated. Reflected light microscope, scanning electron microscope with EDX, and high performance X-ray diffraction were used for fundamental analysis. The experimental results show that, (1) the optimum reduction parameters are 0.9 of C/O, 1200°C and 20 min. At these optimum parameters, the degree of metallization of ore-coal composite pellet is more than 90%. (2) In direct reduced pellets, metallic iron and slag have gathered respectively, and they can be magnetically separated. Nb and Ti are associated together and inserted in slag, and stay in slag phase after magnetic separation. (3) Based on the process of direct reduction followed by magnetic separation, 7.71% of Nb_(2)O_(5)-enriched slag is obtained, which is a good feed for producing ferroniobium or metallic niobium in electric furnace. The Nb_(2)O_(5) content in Nb_(2)O_(5)-enriched slag is 1.8 times of the original ore, and the recovery of Nb is about 85%. These experimental results can give some theoretical references for industrial application in future.
机译:最近,特别是在中国,对全球铌铁的生产给予了特别关注。在目前的工作中,对含Nb_(2)O_(5)的矿石进行直接还原后进行磁选研究。反射光显微镜,带EDX的扫描电子显微镜和高性能X射线衍射用于基础分析。实验结果表明:(1)最佳还原参数为C / O 0.9、1200℃和20 min。在这些最佳参数下,矿煤复合颗粒的金属化程度超过90%。 (2)在直接还原球团中,金属铁和炉渣分别聚集,并且可以磁分离。 Nb和Ti结合在一起并插入炉渣中,并在磁选后停留在炉渣相中。 (3)通过直接还原再进行磁选的过程,获得了7.71%的富含Nb_(2)O_(5)的炉渣,这是在电炉中生产铌铁或金属铌的良好原料。富含Nb_(2)O_(5)的炉渣中的Nb_(2)O_(5)含量是原始矿石的1.8倍,Nb的回收率约为85%。这些实验结果可以为将来的工业应用提供一些理论参考。

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