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Recovering Cobalt and Sulfur in Low Grade Cobalt-Bearing V–Ti Magnetite Tailings Using Flotation Process

机译:浮选法回收低品位含钒钒钛磁铁矿尾矿中的钴和硫

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There is 0.032% cobalt and 0.56% sulfur in the cobalt-bearing V–Ti tailings in the Panxi Region, with the metal sulfide minerals mainly including FeS 2 , Fe 1?x S, Co 3 S 4 , and (Fe,Co)S 2 , and the gangue minerals mainly including aluminosilicate minerals. The flotation process was used to recover cobalt and sulfur in the cobalt-bearing V–Ti tailings. The results showed that an optimized cobalt–sulfur concentrate with a cobalt grade of 2.08%, sulfur content of 36.12%, sulfur recovery of 85.79%, and cobalt recovery and 84.77% were obtained by flotation process of one roughing, three sweeping, and three cleaning under roughing conditions, which employed pulp pH of 8, grinding fineness of 0.074 mm occupying 80%, flotation concentration of 30%, and dosages of butyl xanthate, copper sulfate, and pine oil of 100 g/t, 30 g/t, and 20 g/t, respectively. Optimized one sweeping, two sweeping, and three sweeping conditions used a pulp pH of 9, and dosages of butyl xanthate, copper sulfate, and pine oil of 50 g/t, 15 g/t, 10 g/t; 25 g/t, 7.5 g/t, 5 g/t; 20 g/t, 5 g/t, 5 g/t, respectively. Optimized one cleaning, two cleaning, and three cleaning condition dosages of sodium silicate of 200 g/t, 100 g/t, 50 g/t, respectively. Study of analysis and characterization of cobalt–sulfur concentrate by X-ray diffraction (XRD), automatic mineral analyzer (MLA), scanning electron microscopy (SEM), and energy dispersive spectroscopy (EDS) showed that the main minerals in cobalt–sulfur concentrate are FeS 2, Co 3 S 4 and (Fe,Co)S 2 , of which FeS 2 and (Fe,Co)S 2 accounted for 65.64% and Co 3 S 4 for 22.64%. Gangue minerals accounted for 11.72%. The element Co in (Fe,Co)S 2 is closely related to pyrite in the form of isomorphism, and the flotability difference between cobalt and pyrite is very small, which makes it difficult to separate cobalt and sulfur. Cobalt–sulfur concentrate can be used as raw material for further separation of cobalt and sulfur in smelting by pyrometallurgical or hydrometallurgical methods.
机译:攀西地区含钴钒钛尾矿中钴的含量为0.032%,硫的含量为0.56%,其中的金属硫化物矿物主要为FeS 2,Fe 1?x S,Co 3 S 4和(Fe,Co)。 S 2,and石矿物主要包括铝硅酸盐矿物。浮选工艺用于回收含钴V-Ti尾矿中的钴和硫。结果表明,通过一次粗选,三次吹扫,三次粗选的浮选工艺,得到了钴品位为2.08%,硫含量为36.12%,硫回收率为85.79%,钴回收率为84.77%的优化钴硫精矿。在粗浆条件下进行清洁,使用的纸浆pH为8,磨碎度<0.074毫米,占80%,浮选浓度为30%,黄原酸丁酯,硫酸铜和松油的用量为100 g / t,30 g / t ,分别为20克/吨。优化的一次吹扫,两次吹扫和三种吹扫条件使用的纸浆pH为9,黄原酸丁酯,硫酸铜和松油的用量分别为50 g / t,15 g / t,10 g / t; 25克/吨,7.5克/吨,5克/吨;分别为20 g / t,5 g / t,5 g / t。优化分别为200 g / t,100 g / t,50 g / t的硅酸钠的一次清洗,两次清洗和三种清洗条件剂量。 X射线衍射(XRD),自动矿物分析仪(MLA),扫描电子显微镜(SEM)和能量分散光谱(EDS)对钴硫精矿的分析和表征研究表明,钴硫精矿中的主要矿物是FeS 2,Co 3 S 4和(Fe,Co)S 2,其中FeS 2和(Fe,Co)S 2占65.64%,Co 3 S 4占22.64%。煤石矿物占11.72%。 (Fe,Co)S 2中的元素Co与黄铁矿以同构形式密切相关,并且钴和黄铁矿之间的浮选差很小,这使得难以分离钴和硫。钴硫精矿可以用作通过火法或湿法冶金进一步分离分离钴和硫的原料。

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