白云鄂博不同类型矿石中铌的工艺矿物学特征研究

Process Mineralogical Characteristics of Niobium in Different Ore Types of the Bayan Obo Mine

  • 摘要: 为查明白云鄂博主东矿不同类型矿石中铌的工艺矿物学特征及分布规律,为铌资源的精细选矿与高效利用提供依据,以该矿床不同类型矿石为研究对象,综合采用原子吸收光谱、ICP−AES、化学分析及自动矿物分析系统等手段,系统对比研究了其中铌的工艺矿物学特性。结果表明:不同类型矿石中铌含量差异显著,其中霓石型铌稀土铁矿石平均Nb2O5含量最高(0.18%);同一类型矿石不同样品间Nb2O5含量亦波动较大,霓石型、云母型、白云石型、块状及萤石型铌稀土铁矿石中个别样品Nb2O5含量分别可达1.16%、1.03%、0.57%、0.39%与0.38%,显示出良好的工业利用潜力,是寻找可工业利用铌矿石的重点对象。不同类型矿石中铌矿物种类也存在明显差异:块状、霓石型及闪石型铌稀土铁矿石中以易解石为主,而白云石型、萤石型及云母型铌稀土铁矿石中铌铁矿与铌铁金红石含量较高。此外,铌矿物粒度普遍微细,主要集中于20 µm以下;当磨矿细度达−74 μm占90%时,其单体解离度仍低于20%,在低品位样品中基本不解离,这是导致白云鄂博铌资源当前难以有效利用的主要原因之一。

     

    Abstract: To clarify the process mineralogical characteristics and distribution patterns of niobium in different types of ores from the Bayan Obo East Main Mine, and to provide a basis for the precise beneficiation and efficient utilization of this strategic niobium resource, this study systematically compared the process mineralogical properties of niobium in various ore types from this deposit using atomic absorption spectroscopy, ICP−AES, chemical analysis, and an automated mineral analysis system. The results show that the niobium content varies significantly among different ore types, with the aegirine−type niobium−rare earth−iron ore having the highest average Nb2O5 content (0.18%). The Nb2O5 content also fluctuates considerably among different samples of the same ore type; individual samples of aegirine−type, mica−type, dolomite−type, massive, and fluorite−type niobium−rare earth−iron ores can reach up to 1.16%, 1.03%, 0.57%, 0.39%, and 0.38% Nb2O5, respectively, demonstrating good industrial utilization potential and making them key targets for prospecting industrially viable niobium ores. There are also notable differences in the types of niobium minerals among different ore types: aeschynite predominates in massive, aegirine−type, and amphibole−type niobium−rare earth−iron ores, whereas columbite and niobian rutile are more abundant in dolomite−type, fluorite−type, and mica−type niobium−rare earth−iron ores. Furthermore, niobium minerals are generally fine−grained, primarily concentrated below 20 µm. When the grinding fineness reaches 90% passing 74 µm, the degree of monomer liberation remains below 20%, and it is almost nonexistent in low−grade samples. This is one of the main reasons why the niobium resources at Baiyun Ebo are currently difficult to utilize effectively.

     

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