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A novel mineral processing by flotation using Thiobacillus ferrooxidans

机译:使用Thiobacillus ferrooxidans的浮选新的矿物加工

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Oxidative leaching of metals by Thiobacillus ferrooxidans has proven useful in mineral processing. Here, we report on a new use for T. ferrooxidans whereby bacterial adhesion is used to remove pyrite from mixtures of sulfide minerals during flotation. Under control conditions, the floatabilities of 5 sulfide minerals tested (pyrite, chalcocite, molybdenite, millerite and galena) ranged from 88 to 99 percent. Upon addition of T. ferrooxidans, the floatability of pyrite was significantly suppressed to less than 20 percent. In contrast, addition of the bacterium had little or no effect on the floatabilities of the other minerals, even when they were present in relatively large quantities: Their floatabilities remained in the range of 70 to 94 percent. T. ferrooxidans thus appears to selectively suppress pyrite floatability. As a consequence, 84 to 95 percent of pyrite was removed from mineral mixtures, while 73 to 100 percent of non-pyrite sulfide minerals were recovered. The suppression of pyrite floatability was caused by bacterial adhesion to pyrite surfaces. The number of cells adhering to pyrite was significantly larger than the number adhering other minerals. These results suggest that flotation with T. ferrooxidans may provide a novel approach to mineral processing in which the biological functions involved in cell adhesion play a key role in the separation of minerals.
机译:通过硫氧化物的氧化金属氧化浸出在矿物加工中有可用于矿物加工。在这里,我们向铁氧脱司的新用途报告了氟氯氧苯胺的新用途,用于在浮选期间从硫化物矿物混合物中除去硫铁矿。在对照条件下,测试了5所测试的5颗硫化物矿物(黄铁矿,Chalcocite,钼,Milletite和Galena)的漂浮性从88%到99%。添加到铁氧辛钒后,黄铁矿的可浮动性显着抑制至小于20%。相比之下,即使它们以相对大量存在:它们的漂浮率为70%至94%的范围内,也没有对其他矿物质的浮动性少或无对其他矿物的浮动的影响很小或没有影响。因此,T.Frooxidans似乎选择性地抑制了硫铁渣浮动性。因此,从矿物混合物中除去84%至95%的黄铁矿,而73-100%的非硫代硫化物矿物质被回收。抑制硫铁矿浮动性是由对吡铁矿表面的细菌粘附引起的。粘附在黄铁矿的细胞数量明显大于粘附的其他矿物质的数量。这些结果表明,浮选与铁氧化物的浮选可以提供一种新的矿物加工方法,其中细胞粘附所涉及的生物学功能在分离矿物质中起关键作用。

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