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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Processing of banded magnetite quartzite (BMQ) ore using flotation techniques
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Processing of banded magnetite quartzite (BMQ) ore using flotation techniques

机译:使用浮选技术处理带状​​磁铁矿石英岩(BMQ)矿石

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摘要

Recovery of iron values from banded magnetite quartzite (BMQ) ore by direct and reverse flotation technique is presented. In direct flotation, with oleic acid as the collector, the iron grade in the concentrate that could be achieved is limited to 57% Fe from a feed containing -47% Fe. The difficulty of concentrating iron values by direct flotation technique is due to the fine coating of iron hydroxide over the particles at alkaline pH. In reverse flotation, better selectivity and collectability could be achieved using dodecylamine chloride as the collector. A statistical modeling approach called response surface methodology has been undertaken to optimize the reverse flotation process to maximize the iron grade and recovery. All the experiments have been conducted as per the central composite rotatable design (CCRD) taking collector, frpther, depressant and pH as the factors. The program predicted 64.68% Fe with 66.38% recovery at a dodecylamine concentration of 271.88 g/T, MIBC: 40 g/t, starch: 400 g/T and at pH 9.5, which is also validated by the experimental results.
机译:提出了通过直接浮选和反向浮选技术从带状磁铁矿石英岩(BMQ)矿石中回收铁价的方法。在直接浮选中,使用油酸作为捕收剂,可以将精矿中的铁品位限制为来自含-47%Fe的进料中的57%Fe。通过直接浮选技术浓缩铁值的困难是由于在碱性pH下氢氧化铁在颗粒上的精细涂层。在反向浮选中,使用十二烷基氯化铵作为捕收剂可以实现更好的选择性和可收集性。已经采取一种称为响应面方法的统计建模方法来优化反浮选工艺,以最大程度地提高铁的品位和回收率。所有实验均按照中央复合可旋转设计(CCRD)进行,其中使用集热器,起泡剂,抑制剂和pH值作为因素。该程序预测在十二烷基胺浓度为271.88 g / T,MIBC:40 g / t,淀粉:400 g / T和pH值为9.5时,铁的回收率为64.68%,回收率为66.38%。这也得到了实验结果的验证。

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