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Sulfur Content Reduction and Iron Grade Improvement of V-Ti Magnetite Concentrate by Combining Reverse Flotation and Magnetic Separation

机译:通过组合反向浮选和磁分离,硫含量降低和V-Ti磁铁矿浓缩的铁级改进

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For low-grade iron ore, smelting costs and resource wastage will be increased. Product quality of such ore is affected adversely by an excessive amount of sulfur. This also causes environmental pollution. In accordance with the vanadium-titanium (V-Ti) magnetite concentrate properties with low iron grade and high sulfur content, the joint process of magnetic separation and flotation was carried out. Magnetic separation was conducted to increase the iron grade, while reverse flotation was used to reduce sulfur content. Results show that the feeding mainly contains titanomagnetite, hematite, and pyrite. The sulfur was primarily found in pyrite. The separation effect was influenced by the grinding fineness, magnetic intensity, collector type and dosage, and pH value. At a grinding fineness of-45 μm accounting for 87%, most of the iron minerals exhibited monomer dissociation. An open-circuit experiment was carried out under the best conditions of magnetic intensity, as well as collector and modifier dosage. Good experimental results were obtained as follows: the iron grade increased to 57.17%, iron recovery was 89.94%, sulfur content decreased from 0.66% to 0.26%, reverse flotation of sulfur foam concentrate contained almost 15.68% sulfur, the upgrade ratio was about 23, and the cobalt in the sulfur concentrate was enriched 20-fold. A method for improving the comprehensive utilization level and effect of mineral resources is provided in this study.
机译:对于低级铁矿石,将增加冶炼成本和资源浪费。这些矿石的产品质量因过量的硫而受到不利影响。这也会导致环境污染。根据钒 - 钛(V-Ti)磁铁矿浓缩性,具有低铁级和高硫含量,进行磁性分离和浮选的关节过程。进行磁性分离以增加铁等级,而逆转浮选用于减少硫含量。结果表明,饲料主要含有钛镁石油,赤铁矿和黄铁矿。硫主要在黄铁矿中发现。分离效果受磨削细度,磁强,收集器型和剂量和pH值的影响。在磨削细度-45μm占87%的情况下,大多数铁矿物质表现出单体解离。开路实验是在磁强度的最佳条件下进行的,以及收集器和改性剂剂量。如下取得良好的实验结果:铁等级增加至57.17%,铁恢复为89.94%,硫含量从0.66%降至0.26%,硫泡沫浓缩物的逆浮选含量近15.68%,升级率约为23并且硫浓缩物中的钴富集20倍。本研究提供了一种提高综合利用水平和矿产资源效果的方法。

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