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Research on the Possibility of Sorting Application for Separation of Shale and/or Gangue from the Feed of Rudna Concentrator

机译:从Rudna浓缩器饲料中分离页岩和/或煤矸石分离应用的可能性研究

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Shale, which occurs in the copper ore deposits belonging to KGHM Polska Mied? S.A., is the reason for a number of difficulties, at the stage of not only processing but also smelting. Gangue, in turn, getting in a feed during mining is a useless load of a concentrator and also contributes to lowering concentrating indexes. Its content in a feed is being evaluated at 15-30%. The multiple attempts to solve those issues by the methods of conventional mineral processing or even selective mining failed. In the range of work, research on the lithological composition and Cu content in 300 individual particles (selected from Rudna feed) have been carried out. Using those results, the simulation of gangue separation with an application of sorting have been done. The positive results have been received: introduction of a sorting operation causes, theoretically, removing of approximately 20-30% sorting feed mass as final tailings with Cu losses not bigger than 5-10%. It means that the capacity of Rudna concentrator can be increased proportionally. To confirm those results, industrial sorting trials are necessary, when appropriate sorters will become available. Additionally, one should take also into account that the finest classes of feed (-12.5 mm) could not be concentrated in a sorter. In the range of work, the preliminary tests of the industrial sorter (PRO Secondary Color NIR) for separation of the shale concentrate from Rudna concentrator feed have been carried out. The shale concentrates were received both from 12.5-20 mm class and +20 mm class. The concentrates produced from the coarse classes, for both technological sides had shale content at the level of 48-49%, with recovery of 52.9-60%. In the case of the finer class, shale content in the concentrates for both technological sides amounts to 30.9-35%, at the slightly lower recoveries than for coarse classes. Cu and Corg behavior in the sorting process were checked also, however, the results turned out to be not very interesting. Because the results of shale concentrate production by sorting have a significant potential for improvement, the further researches in this direction have been recommended, however, making them start off from elaboration of a technology for shale concentrate processing and calculation of a total balance of a concentrating process involving flotation and separation.
机译:页岩,发生在属于KGHM Polska的铜矿矿床中吗? S.A.,这是一些困难的原因,在不仅处理的阶段而且冶炼的阶段。距离挖掘过程中的煤矸石是集中器的无用负荷,也有助于降低集中指标。其在饲料中的内容正在为15-30%进行评估。通过传统矿物加工方法或甚至选择性采矿的方法来解决这些问题的多次尝试失败。在工作范围内,已经进行了对300个单独的颗粒中的岩性组合物和Cu含量(选自Rudna饲料)的研究。使用这些结果,已经完成了使用分类的应用模拟钻石分离。已经收到了阳性结果:引入分类操作原因,从理论上,除去大约20-30%的分选饲料质量作为最终尾矿,Cu损耗不大于5-10%。这意味着Rudna集中器的容量可以按比例增加。为了确认这些结果,当适当的分拣机将可用时,需要工业排序试验。此外,还应考虑到最好的饲料(-12.5 mm)不能集中在分拣机中。在工作范围内,已经进行了用于分离来自Rudna浓缩器进料的页岩浓缩物的工业分选仪(Pro二级颜色NIR)的初步试验。从12.5-20 mm级和+20 mm级别接受页岩浓缩物。从粗阶层生产的浓缩物,对于两种技术侧面的含量为48-49%,回收率为52.9-60%。在细细的类别的情况下,技术侧面的浓缩物中的页岩含量为30.9-35%,略低于粗阶层。然而,还检查了分拣过程中的CU和CORG行为,结果证明结果不是很有趣。由于页岩集中的结果通过分类产生了显着的改进潜力,因此已经建议在这方面进一步研究,然而,从而开始阐述页岩集中加工和计算总体余额的技术的阐述涉及浮选和分离的过程。

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