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TREATMENT OF GOLD-BEARING OXIDE HIGH-CLAYISH ORES

机译:治疗氧化氧化氧化物高粘土矿石

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The analysis of modern state of treatment technologies of gold-bearing oxide high-clayish ores showed that the main method applied both in Russia and abroad is sorption leaching and heap leaching with preliminary granulating. The use of any of these processes depends on many factors including average gold grade, site and area of a deposit, clay content and etc. The two processes are often used at the same deposit. In this case, rich ores are treated according to a plant technology, poor ores and ores with cut-off grade are treated with heap leaching. Both technologies possess their own advantages and disadvantages. A plant technology is characterised by high recovery with higher capital and operating costs at the same time. Lower recovery during heap leaching can be attributed to an unstable quality of ore granulating due to both technological and weather conditions. In case of poor high-clayish ores, the use of a combined ore treatment is possible and profitable. It includes the ore disintegration and a clayish fraction treatment by using a heap leaching. In this case, capital and operating costs reduce in comparison with a plant technology and the recovery increases in comparison with heap leaching. Sometimes it reaches a plant recovery. These ores possess special features. As a rule, gold is associated with ore fraction, so it liberates readily from the association with ore ore-forming minerals even with relatively coarse grinding explain their high solution velocity in a hydrometallurgical cycle. Clayish ores are characterised by high sorption activity to gold cyanide complexes as well as extremely low velocity of filtration and thickening of slimic pulps at the same time. The paper describes the options of oxidised high-clayish ores treatment, such as, a plant technology (PIP and CIP process), heap leaching and a combined technology (disintegration, heap leaching of a crystalline fraction and sorption cyanidation). The obtained results were used when selecting a treatment technology and during construction of a plant for oxidised high-clayish ores treatment.
机译:淘金氧化物高层矿石现代治疗技术的分析表明,俄罗斯和国外应用的主要方法是吸附浸出和堆浸入初步造粒。任何这些过程的使用取决于许多因素,包括平均金级,沉积物,粘土含量等的地点和面积等。这两种过程通常在同一矿床上使用。在这种情况下,富含植物技术治疗的富矿,贫瘠的矿石和带截止等级的矿石接受堆浸出。两种技术都拥有自己的优缺点。植物技术的特点是恢复高,资金较高和运营成本同时。由于技术和天气条件,堆浸出期间较低的恢复可归因于矿石造粒的不稳定质量。如果高粘土矿石的情况,可以使用组合的矿石治疗和盈利。通过使用堆浸出,它包括矿石崩解和块状分数处理。在这种情况下,与植物技术相比,资本和运营成本减少了与植物技术相比,与堆浸出相比,恢复增加。有时它达到了植物恢复。这些矿石具有特殊功能。通常,黄金与矿石部分有关,因此即使在相对粗糙的研磨中,也可以从与矿石形成矿物质的关系中释放出来的液体冶金循环中的高溶液速度。 Clayish ORES的特征在于金氰化物复合物的高吸附活性以及极低的过滤速度,同时纤维纸浆的增厚。本文描述了氧化高粘土矿石治疗的选择,例如植物技术(PIP和CIP过程),堆浸出和组合技术(崩解,结晶级分和吸附氰化的堆积)。 The obtained results were used when selecting a treatment technology and during construction of a plant for oxidised high-clayish ores treatment.

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