首页> 外文会议>Interfacial Phenomena in Fine Particle Technology >EFFECT OF AIR-OXIDATION ON FLOTATION OF PYRRHOTITE AND PENTLANDITE: STOCKPILE OXIDATION VS ARTIFICIAL OXIDATION
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EFFECT OF AIR-OXIDATION ON FLOTATION OF PYRRHOTITE AND PENTLANDITE: STOCKPILE OXIDATION VS ARTIFICIAL OXIDATION

机译:空气氧化对黄铁矿和黄铁矿浮选的影响:桩头氧化VS人工氧化

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Batch flotation tests were carried out using samples from stockpiles that were up to 1.5 months old as well as fresh samples oxidized in the lab for up to six months. Head grades and size distributions of samples were equalized whenever possible. The samples from stockpiles and oxidation experiments produced inferior nickel grade-recovery compared to the fresh sample. The poorer grade-recovery performance was attributable to two factors. First, a significant dilution effect was observed due to complete flotation of pyrrhotite. Secondly, the same stockpiling conditions caused nickel losses that were attributable to non-floatability of some pentlandite. Application of a high Ph of 10 compared to the regular Ph of 9.2 slowed down pyrrhotite flotation kinetics, but was not able to prevent complete flotation after 8 minutes. The samples oxidized in the lab did not match full characteristics of stockpile samples. They provided somewhat better selectivity for pentlandite. Some correlations were observed on a qualitative basis between surface characteristics such as elemental sulphur formation, activation and flotation behaviour. Oxidation conditions, which induce floatability on pyrrhotite while causing incremental loss in pentlandite floatability appear to be the root cause of difficulties in the processing of oxidized forms of these ores.
机译:使用不超过1.5个月的库存样品以及实验室中长达6个月的氧化新鲜样品进行批量浮选测试。样品的头部等级和大小分布均应尽可能均等。与新鲜样品相比,来自库存和氧化实验的样品产生的镍品位回收率较低。成绩恢复表现较差的原因有两个。首先,由于磁黄铁矿的完全浮选,观察到明显的稀释作用。其次,相同的储存条件导致镍的损失,这归因于某些五方石的不漂浮性。与常规pH值9.2相比,应用高pH值10会减慢黄铁矿浮选动力学,但在8分钟后无法阻止完全浮选。在实验室中氧化的样品与库存样品的全部特性不符。他们提供了一些更好的五氧化二钛选择性。在定性的基础上观察到一些相关性,例如元素硫的形成,活化和浮选行为。氧化条件在黄铁矿上引起可浮性,同时导致五方铁矿的可浮性增加损失,这似乎是这些矿石氧化形式加工困难的根本原因。

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