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A new method for flotation rate characterization using top-of-froth grades and the froth discharge velocity

机译:利用泡沫最高品位和泡沫排出速度表征浮选速率的新方法

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A new methodology is proposed for flotation characterization in industrial operations. The approach considers the mineral recovery to be proportional to both the top-of-froth (TOF) grade and the froth discharge velocity down a bank of cells. The procedure allows for the identification of the fractional recovery profile from the discharge velocities and the TOF grades. In addition, if the total recovery of the bank is available, the cell recoveries can be estimated by scaling the fractional recoveries. For this purpose, a single parameter was used to scale the recoveries for each sampling survey in order to obtain the kinetic response along the flotation banks. Industrial tests were performed in two rougher banks; one bank consisted of six 250 m(3) self-aerated cells in a 1-1-1-1-1-1 arrangement, and the other bank consisted of nine 130 m(3) self-aerated cells in a 1-2-2-2-2 arrangement. The results showed good agreement with the recovery profiles obtained from the cell-by-cell mass balances along two industrial flotation banks. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种用于工业操作中浮选特性的新方法。该方法认为矿物的回收率与泡沫的最高(TOF)等级和沿一排单元的泡沫排出速度成正比。该程序可以从排放速度和TOF等级中识别出分数回收曲线。另外,如果有可用的银行总回收率,则可以通过按比例回收部分回收率来估算细胞回收率。为此,使用单个参数来缩放每个采样调查的回收率,以获得沿浮选库的动力学响应。工业测试在两个较粗糙的银行中进行;一个银行由1-1-1-1-1-1排列的六个250 m(3)个自充气细胞组成,另一个银行由1-2个气球由九个130 m(3)的自充气细胞组成-2-2-2的安排。结果表明,与沿两个工业浮选库逐个单元的质量平衡获得的回收率曲线吻合得很好。 (C)2016 Elsevier Ltd.保留所有权利。

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