首页> 外文会议>International Conference on Industrial Engineering and Engineering Management >The Critical Influence of Pulp Oxygen Content on the Separation of Pentlandite from Pyrrhotite in Two Process Streams of the Clarabelle Mill of VALE INCO, Sudbury, Canada
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The Critical Influence of Pulp Oxygen Content on the Separation of Pentlandite from Pyrrhotite in Two Process Streams of the Clarabelle Mill of VALE INCO, Sudbury, Canada

机译:在加拿大萨德伯里的VALE INCO的Clarabelle磨机的两个工艺流中,纸浆含氧量对从黄铁矿和锂铁矿分离中的膨润土的关键影响

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This paper focuses on the influence of pulp oxygen content on the separation of pentlandite and pyrrhotite contained in two different process streams in the Clarabelle Mill, operated by VALE INCO. The two process streams are (ⅰ) the scavenger cleaner feed, the product of regrinding the thickened, scavenged concentrate and the B cleaned tail produced from treating the non-magnetic fraction of the milled run of mine ore, and (ⅱ) the magnetic concentrate which is the magnetic fraction of the milled run of mine ore. In the Clarabelle Mill, sulphite (SO32-) and TETA (triethylenetetramine) are together used to selectively depress pyrrhotite from pentlandite. These depressants preferentially decompose collector and/or sulphur enriched species at the pyrrhotite surface, an apparently essential mechanism in pyrrhotite depression from the scavenger cleaner feed stream. Selectivity in depression may originate from differences in the electrochemical rest potential of pyrrhotite and pentlandite. As both minerals are susceptible to oxidation, aeration in conditioning and flotation plays a key role in selective flotation. Important differences in the flotation behavior of pentlandite and pyrrhotite from the magnetic concentrate and the scavenger cleaner streams are highlighted in this work and several diagnostic tools were applied to diagnose the origin for these differences.
机译:本文主要关注纸浆含氧量对VALE INCO运营的Clarabelle轧机中两种不同工艺流中所含的五方铁矿和黄铁矿的分离的影响。这两个工艺流是(ⅰ)清除剂清洁剂进料,将增稠的,清除后的精矿和通过处理矿山磨矿的非磁性馏分而产生的B净化尾矿重新磨浆的产物,以及(ⅱ)磁性精矿这是矿粉碾磨过程中的磁性部分。在克拉拉贝尔磨厂中,亚硫酸盐(SO32-)和TETA(三亚乙基四胺)一起用于从五方石中选择性地压制黄铁矿。这些抑制剂优先分解黄铁矿表面的捕收剂和/或富硫物质,这显然是清除清除剂进料流中黄铁矿压制的必不可少的机理。凹陷的选择性可能源于黄铁矿和五方铁矿的电化学静电势差异。由于两种矿物均易于氧化,因此调节和浮选中的通气在选择性浮选中起关键作用。这项工作着重说明了磁铁矿和清除剂清洁剂流中的五方铁矿和黄铁矿浮选行为的重要差异,并使用了几种诊断工具来诊断这些差异的成因。

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