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Liberation-limited grade/recovery curves for auriferous pyrite ores as determined by High Resolution X-ray Microtomography.

机译:通过高分辨率X射线显微断层照相术测定的金铁矿矿石的有限极限品位/回收率曲线。

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摘要

As in all flotation separations, the separation efficiency for the flotation of pyrite from auriferous pyrite ores depends on the flotation conditions and the particle properties of the feed ore. Liberation and texture are particle properties that refer to release of valuable minerals from gangue waste minerals during size reduction and the arrangement of these mineral phases within the particles. Separation efficiency may be impacted significantly by variation in liberation and the texture of locked particles, even with locked particles having the same overall composition. Not all locked particles of the same composition will have the same flotation response. Their flotation response will also depend on their texture. Now, analysis of liberation and texture is possible using High Resolution X-ray Microtomography (HRXMT). This analytical technique can provide quantitative information on liberation and exposure (texture) for each particle in a given particle population.;Products from the flotation of two types of auriferous pyrite ores, both batch scale experiments and plant operations, were analyzed by HRXMT. In this way, the degree of liberation of the pyrite grains was determined. The liberation-limited grade/recovery curves were calculated for each ore. The liberation-limited grade/recovery curves are used to determine the limits of the separation efficiency. Also, the characteristic texture of particles in each flotation product was determined and the effect of these textural features on the flotation separation efficiency discussed.;It was found that the separation efficiency of auriferous pyrite was controlled principally by factors other than liberation. In general the texture analysis revealed that the pyrite-containing particles with a high exposure of pyrite grains at the particle surface have a better possibility of being recovered in the concentrate during flotation.
机译:与所有浮选分离一样,从含铁黄铁矿矿石浮选黄铁矿的分离效率取决于浮选条件和进料矿石的颗粒性质。释放和质地是颗粒性质,是指在减小尺寸以及这些矿物相在颗粒内的排列过程中从脉石废物中释放出有价值的矿物。分离效率可能会因释放的变化和锁定颗粒的质地而受到显着影响,即使锁定颗粒的总体组成相同。并非所有具有相同成分的锁定颗粒都具有相同的浮选响应。它们的浮选反应也将取决于它们的质地。现在,可以使用高分辨率X射线显微断层扫描(HRXMT)分析释放和质地。这种分析技术可以提供给定粒子群中每个粒子的释放和暴露(质构)的定量信息。通过HRXMT分析了两种类型的黄铁矿的浮选产品,无论是分批规模实验还是工厂操作。这样,确定了黄铁矿晶粒的释放度。计算了每种矿石的解放极限品位/回收率曲线。解放极限的品位/回收率曲线用于确定分离效率的极限。同时,确定了每种浮选产品中颗粒的特征织构,并探讨了这些结构特征对浮选分离效率的影响。发现金铁矿黄铁矿的分离效率主要受解放以外的因素控制。通常,纹理分析表明,在浮选过程中,在颗粒表面上暴露出大量黄铁矿颗粒的含黄铁矿颗粒具有更高的回收可能性。

著录项

  • 作者

    Medina, Juan Francisco.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Mineralogy.;Engineering Mining.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 249 p.
  • 总页数 249
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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