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The flotation of magnetic and non-magnetic pyrrhotite from selected nickel ore deposits

机译:从选定的镍矿床中浮选磁性和非磁性磁黄铁矿

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摘要

The non-stoichiometric sulfide mineral pyrrhotite (Fe(1 x)S), common to many nickel ore deposits, occurs in different crystallographic forms and compositions. A series of pyrrhotite samples derived from Canada, South Africa and Botswana whose mineralogy is well characterised, were selected here in order to develop the relationship between mineralogy and flotation performance. Using both oxygen uptakeand microflotation tests, the behaviour of the different pyrrhotite types was compared in terms of the effect of pH and collector addition. Non-magnetic pyrrhotite was less reactive in terms of its oxygen uptake and showed the best collectorless flotation recovery. Magnetic pyrrhotite was more reactive and showed poor collectorless flotation performance that could be improved with the addition of xanthate collector, but only if it was not already passivated. These differences are interpreted to be a resultof pyrrhotite mineralogy. This has implications that may aid the manipulation of pyrrhotite flotation performance in processing operations.
机译:非化学计量硫化物矿物黄铁矿(Fe(1 x)S),许多镍矿床共有,以不同的晶体学形式和成分出现。为了确定矿物学与浮选性能之间的关系,这里选择了一系列来自加拿大,南非和博茨瓦纳的磁黄铁矿样品,这些样品具有良好的矿物学特征。使用吸氧法和微浮选法,根据pH值和添加捕收剂的效果比较了不同黄铁矿类型的行为。就吸氧性而言,非磁性黄铁矿反应性较低,并且显示出最佳的无捕收剂浮选回收率。磁性黄铁矿的反应性更高,并且显示出较差的无捕收剂浮选性能,可以通过添加黄药收集器来改善浮选性能,但前提是尚未将其钝化。这些差异被解释为是黄铁矿矿物学的结果。这可能有助于在加工操作中操纵黄铁矿浮选性能。

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