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New Separation Method of Boron and Iron from Ludwigite Based on Carbon Bearing Pellet Reduction and Melting Technology

机译:基于含碳球团还原熔融技术的路德维希族硼铁分离新方法

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摘要

Ludwigite is the most abundant boron resource in China. In order to fully utilize the complex ore and meet the boron and iron consumption of the country, a new process was proposed in this research. Fine ludwigite and pulverized coal were pelletized and then reduced isothermally at high temperatures. The influence of reduction conditions, such as reduction temperature and C/O (mole ratio), on the metallization degree and melting morphology of the samples, were studied in detail. The pellet could not melt well at higher or lower temperature than 1673 K. The increase in C/O could improve the reduction and melting rate of the pellet. The appropriate temperature and C/O were 1673 K and 1.2 in the work. When the pellet was reduced at 1673 K for 12 min, the iron and slag separated in a clean manner. The apparent activation energy of reduction stage was 180.17 kJ/mol. The boron content of nugget and boron oxide (B_(2)O_(3)) content of the slag were 0.065% and 20.01%, respectively. In addition, the microstructure, phase transformation and phases composition of the samples were characterized by means of XRD, SEM, EDS and optical microscope. The efficiency of extraction of boron (EEB) of the slag was 86.46% when it was cooled in a slow method. The boron-bearing nugget and boron-rich slag were good raw materials for steelmaking and borax production.
机译:路德维希是中国最丰富的硼资源。为了充分利用复杂的矿石并满足该国的硼和铁消耗量,本研究提出了一种新工艺。将细的路德维希和煤粉造粒,然后在高温下等温还原。详细研究了还原温度,C / O(摩尔比)等还原条件对样品金属化程度和熔融形态的影响。在高于或低于1673 K的温度下,粒料不能很好地融化。C/ O的增加可以提高粒料的还原度和熔融速率。在工作中,适当的温度和C / O为1673 K和1.2。当将颗粒在1673 K下还原12分钟时,铁和炉渣以干净的方式分离。还原阶段的表观活化能为180.17kJ / mol。炉渣中的硼含量和炉渣中的氧化硼(B_(2)O_(3))含量分别为0.065%和20.01%。此外,通过XRD,SEM,EDS和光学显微镜对样品的微观结构,相变和相组成进行了表征。当用慢速方法冷却时,渣中硼(EEB)的提取效率为86.46%。含硼矿块和富硼渣是炼钢和硼砂生产的良好原料。

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