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首页> 外文期刊>Hydrometallurgy >A multi-analytical approach to the study of uranium-ore agglomerate structure and porosity during heap leaching
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A multi-analytical approach to the study of uranium-ore agglomerate structure and porosity during heap leaching

机译:一种多分析方法来研究铀 - 矿石结构与堆浸涂过程中的孔隙率

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Agglomeration is commonly used for processing clay-rich ores in order to prevent undesirable effects, especially the risks of plugging or preferential channelling within the heap leaching piles. As the mechanical and chemical stability of the agglomerates is of crucial importance for the behaviour of the pile, a detailed characterization of the structure and porosity of agglomerates seems necessary. In the present study, uranium-bearing clay rich ore was agglomerated and agglomerates were studied before as well as after 10 days of leaching. A multi-analytical approach (by X-ray tomography, SEM, XRD and MIP analyses) was used for the study of the mineralogy, porosity distribution and textures of the agglomerates. X-ray tomography and SEM images showed that agglomerates were the result of coalescence and layering of micro-agglomerates where each one in turn was composed of a nucleus embedded within phyllosilicates and an aluminous silicate matrix. MIP analyses highlighted that unleashed agglomerates had a low connected porosity (between 3 and 7%). During the 24 first hours of process, the connected porosity increased by a factor 2 because of the leaching of the aluminous silicate matrix and about 60% of the uranium was recovered. During the next 9 days, the formation of a secondary aluminous silicate matrix derived from the dissolution of illites resulted in the plugging of mesopores and therefore led to a decrease of porosity and uranium extraction extent.
机译:为了防止不良影响,尤其是堆浸堆内堵塞或优先沟道的风险,通常使用凝聚法处理富含粘土的矿石。由于团聚体的机械和化学稳定性对桩的性能至关重要,因此有必要详细描述团聚体的结构和孔隙率。在本研究中,对富含铀粘土的矿石进行了凝聚,并在浸出前和浸出后10天对凝聚进行了研究。采用多分析方法(通过X射线层析、SEM、XRD和MIP分析)研究了团聚体的矿物学、孔隙度分布和结构。X射线断层扫描和SEM图像显示,团聚体是微团聚体聚结和分层的结果,其中每个团聚体依次由嵌入层状硅酸盐和铝硅酸盐基质中的细胞核组成。MIP分析强调,释放的团聚体具有较低的连通孔隙率(3%至7%)。在最初的24小时内,由于铝硅酸盐基质的浸出,连接的孔隙率增加了2倍,约60%的铀被回收。在接下来的9天里,由于伊利石溶解而形成的次生铝硅酸盐基质导致中孔堵塞,因此导致孔隙度和铀提取程度降低。

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