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Magnetic separation of hematite and limonite fines as hydrophobic flocs from iron ores

机译:磁性分离铁矿石中疏水性絮凝体-赤铁矿和褐铁矿细粉

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摘要

Magnetic separation of weakly magnetic iron mineral fines in the form of floes, which is termed Floc Magnetic Separation (FMS) process, has been studied in the present work, in order to find a substitution for high-intensity or high-gradient magnetic separators to treat the ores with weakly magnetic iron minerals in the fine size range. This study was performed on a hematite ore and a limonite ore that were finely ground to be micron particles, through the hydrophobic flocculation induced by sodium oleate and kerosene to make flocs. The experimental results have shown that the FMS process is effective to recover hematite and limonite fines at a middle magnetic field intensity, greatly increased the separation efficiency, compared with the conventional magnetic separation at the same conditions. By applying the process to the fine hematite ore containing 30.5 percent Fe, a concentrate assaying 64 percent Fe with 82 percent recovery has been produced. It has been found that the separation efficiency of the FMS process closely correlates with the main parameters of hydrophobic flocculation such as sodium oleate addition, conditioning time and kerosene addition. This finding suggests that the high efficiency achieved by the FMS process might be attributed to the considerable increase of the magnetic force on the iron mineral fines in the form of hydrophobic flocs in a magnetic field, thus the fines can be held by the separation plates in a magnetic separator and then be collected as magnetic concentrates.
机译:为了找到高强度或高梯度的磁选机的替代品,目前已研究了以絮凝物形式存在的弱磁性铁矿细粉的磁选,该工艺称为絮凝磁选(FMS)工艺。用细粒度范围内的弱磁性铁矿物处理矿石。这项研究是通过将油酸钠和煤油诱导的疏水性絮凝作用制成的絮凝物,将赤铁矿和褐铁矿精磨成微米级颗粒。实验结果表明,与相同条件下的常规磁选相比,FMS工艺在中等磁场强度下能有效回收赤铁矿和褐铁矿细粉,大大提高了分离效率。通过将该工艺应用于含铁量为30.5%的细赤铁矿矿石,可以生产出精矿,其中铁含量为64%,回收率为82%。已经发现,FMS方法的分离效率与疏水性絮凝的主要参数紧密相关,例如油酸钠的添加,调节时间和煤油的添加。这一发现表明,FMS工艺获得的高效率可能归因于磁场中疏水性絮凝物形式的铁矿细粉上的磁力的显着增加,因此细粉可以通过分离板保持在磁选机,然后收集为磁精矿。

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