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首页> 外文期刊>Journal of Dispersion Science and Technology >Sulphur removal of iron ore tailings by flotation
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Sulphur removal of iron ore tailings by flotation

机译:通过浮选去除铁矿石尾矿

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Iron ore tailings have become one kind of the most hazardous solid waste. Beneficiation of iron ore tailings is a significant issue in the world steel industries, from the point of view of both pollution control and secondary resources. This investigation addressed the processing of tailings with high sulphur content from an iron ore concentrator to produce pellet feed fines and to prevent acid mine drainage. This study was the lab-scale testing of an integrated method consisting of froth flotation combined with gravity and magnetic separation. Reverse flotation located at the end of the primary treatment circuit (high- and low-intensity magnetic separation) will lower a large amount of the sulphur from magnetic separator concentrate. The effects of various operating parameters such as concentrations of collector, frother, depressant and activator, pH, solid-in-pulp concentration have been studied on the sulphur removal using reverse flotation. According to the data presented in this study, the maximum recovery of total sulphur was obtained when the operational parameters were set to the PAX dosage160gr/t, MIBC dosage 140gr/t, CuSo(4) 100gr/t, air flow rate 10l/min, pH 8.5, and pulp density 30%. With these optimum parameters, final concentrate with the grade of 63.7% Fe and 0.085% S was obtained. The results of this study indicated that, with this method, a great amount of iron concentrate is produced and, simultaneously, the sulphidic fraction is separated that can later be managed more easily owing to the reduced volume.
机译:铁矿尾矿已成为危害最大的固体废物之一。从污染控制和二次资源的角度来看,铁矿尾矿的选矿是世界钢铁工业的一个重大问题。这项研究涉及从铁矿选矿厂处理高硫含量的尾矿,以生产球团饲料细粉,并防止酸性矿山排水。本研究是泡沫浮选与重磁分离相结合的综合方法的实验室规模试验。位于一级处理回路(高强度和低强度磁选)末端的反浮选将降低磁选精矿中的大量硫。研究了捕收剂、起泡剂、抑制剂和活化剂浓度、pH值、矿浆固形物浓度等操作参数对反浮选脱硫的影响。根据本研究提供的数据,当操作参数设置为PAX剂量160gr/t、MIBC剂量140gr/t、CuSo(4)100gr/t、空气流量10l/min、pH 8.5和矿浆密度30%时,可获得最大的总硫回收率。通过这些优化参数,最终获得了铁品位为63.7%、硫品位为0.085%的精矿。这项研究的结果表明,使用这种方法,可以生产大量的铁精矿,同时分离硫化物组分,由于体积减小,以后可以更容易地进行管理。

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