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Creation of Automated Lump Sorting of Molybdenum-Containing Ores in the Technology of Forming the Quality of Ore Mass Flows at the Mining Stage

机译:在矿藏在矿业阶段形成矿石质量流动的技术中创建含钼矿石的自动肿块分类

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At the initial stage of the development of the Tyrnyauz deposit, complex scheelite and molybdenite containing ore were extracted, the processing of which was carried out by a single technological stream. Subsequently, monocomponent ores (molybdenum or tungsten-containing ores) are involved in mining. Since the mixing of monocomponent ores leads to mutual dilution, it is planned to separate them separately. At the same time, separate processing exacerbates the problem of oxidized molybdenum-containing ores.Separate sections of the deposit are susceptible to varying degrees of oxidation. The indicators of the existing enrichment technology with a degree of oxidation of molybdenite exceeding 10% deteriorate noticeably. According to the current technology from tungsten-molybdenum ores, the pellitite is extracted together with scheelite into the collective concentrate. In case of separate processing, the presence of calcium minerals in the ore makes it difficult to obtain rich primitic concentrates.To solve the problem, a technology has been developed for the formation of the quality of molybdenum-containing ores, including the zoning of the open field, the differentiation of the ore massifs that are different in terms of technological properties, and the selective excavation into an independent stream of ores from zones with increased oxidation of molybdenite. After the concentration of the levellite by the method of luminescent separation, the oxidized molybdenum-containing ores are processed separately. From coarse concentrate, after oxidation of molybdenite, the levellate leaching is carried out in the melt medium of a mixture of chloride and sodium silicate. The tail separation product is sent after grinding to flotation to form a molybdenum concentrate.The implementation of the technology is possible on the basis of a high level of automation of mining processes, in particular using special algorithms of robotic excavator intraboy sorting and an automated control system for intracatch piece separation.
机译:在Tyryauz沉积物的发展的初始阶段,提取含有矿石的复杂的硅藻土和钼矿,其处理由单一技术流进行。随后,单一组分矿石(含钼或含钨的矿石)涉及开采。由于单一组分矿石的混合导致相互稀释,因此计划分别分离它们。同时,单独的加工加剧了含氧化钼的矿石的问题。沉积物的细胞部分易受不同程度的氧化。具有超过10%氧化钼的氧化程度的现有富集技术的指标显着恶化。根据钨 - 钼矿石的目前的技术,薄层耐力用硅藻土萃取到集体浓缩物中。在单独加工的情况下,矿石中的钙矿物质的存在使得难以获得富极素浓缩物。要解决该问题,已经开发了一种技术,用于形成含钼的矿石的质量,包括分区开放领域,在技术特性方面不同的矿石的分化,以及从带来增加钼沸石的区域的独立矿石中的选择性开挖。通过发光分离方法浓缩左旋石,含氧化钼的矿石分别加工。从粗浓缩物,在钼氧化后,左旋液浸出在氯化物和硅酸钠的混合物的熔体培养基中进行。尾部分离产品在研磨到浮选后,形成钼浓缩物。该技术的实施是可以基于高水平的采矿过程自动化,特别是使用机器人挖掘机侦听特殊算法和自动控制的特殊算法绞线分离系统。

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