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Multi-Stage Flotation for the Removal of Ash from Fine Graphite Using Mechanical and Centrifugal Forces

机译:利用机械力和离心力进行多阶段浮选以去除细石墨中的灰分

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Graphite ore collected from Hunan province, south China was characterized by chemical analysis, X-ray diffraction, and optical microscopy. Rougher and multi-stage flotation tests using a mechanical flotation cell and a flotation column containing an additional centrifugal force field were carried out to promote its grade and economic value. In rougher flotation, both the mechanical flotation cell and flotation column reduced the ash content of the graphite ore from 15.43% to 10.8%, while the yield of the flotation column (91.41%) was much higher than that of the mechanical flotation cell (50%). In the presence of hydrophobic graphite, the seriously entrained gangue restricted further improvement in the quality and economic value of the graphite ore. Therefore, multi-stage flotation circuits were employed to diminish this entrainment. Multi-stage flotation circuits using the two flotation devices further decreased the ash content of the graphite ore to ~8%, while the yield when using the flotation column was much higher than that obtained from the mechanical flotation cell employed. On the other hand, the ash removal efficiency of the flotation column was 3.82-fold higher than that observed for the mechanical flotation cell. The Cleaner 3 flotation circuit using the flotation column decreased the ash content in graphite from 15.43% to 7.97% with a yield of 77.53%.
机译:通过化学分析,X射线衍射和光学显微镜对从华南湖南省采集的石墨矿石进行了表征。使用机械浮选池和包含附加离心力场的浮选柱进行了粗略和多阶段的浮选试验,以提高其等级和经济价值。在粗浮选中,机械浮选池和浮选柱都将石墨矿石的灰分从15.43%降低到10.8%,而浮选柱的收率(91.41%)大大高于机械浮选(50)。 %)。在疏水性石墨存在下,严重夹带的脉石限制了石墨矿石质量和经济价值的进一步提高。因此,采用多级浮选回路来减少这种夹带。使用两个浮选装置的多级浮选回路将石墨矿石的灰分进一步降低至〜8%,而使用浮选柱时的收率远高于从采用的机械浮选池获得的收率。另一方面,浮选柱的除灰效率比机械浮选池的除灰效率高3.82倍。使用浮选塔的Cleaner 3浮选回路将石墨中的灰分含量从15.43%降低至7.97%,产率为77.53%。

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