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Investigation of air jigging and air classification to recover metallic particles from analytical samples.

机译:进行空气夹具和空气分类研究,以从分析样品中回收金属颗粒。

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摘要

Analyzing "nuggety" gold samples commonly produces erratic fire assay results, due to random inclusion or exclusion of coarse gold in analytical samples. Preconcentrating gold samples might allow the nuggets to be concentrated and fire assayed separately. In this investigation synthetic gold samples were made using similar density tungsten powder and silica, and were preconcentrated using two approaches: an air jig and an air classifier. Current analytical gold sampling method is time and labor intensive and our aim is to design a set-up for rapid testing. It was observed that the preliminary air classifier design showed more promise than the air jig in terms of control over mineral recovery and preconcentrating bulk ore sub-samples. Hence the air classifier was modified with the goal of producing 10-30 grams samples aiming to capture all of the high density metallic particles, tungsten in this case. Effects of air velocity and feed rate on the recovery of tungsten from synthetic tungsten-silica mixtures were studied. The air classifier achieved optimal high density metal recovery of 97.7% at an air velocity of 0.72 m/s and feed rate of 160 g/min. Effects of density on classification were investigated by using iron as the dense metal instead of tungsten and the recovery was seen to drop from 96.13% to 20.82%. Preliminary investigations suggest that preconcentration of gold samples is feasible using the laboratory designed air classifier.
机译:由于在分析样品中随机包含或排除了粗金,分析“块状”金样品通常会产生不稳定的着火分析结果。对金样品进行预浓缩可将金块进行浓缩并分别进行火化验。在这项研究中,使用相似密度的钨粉和二氧化硅制成了合成金样品,并使用两种方法进行了预浓缩:空气夹具和空气分级器。当前的分析金采样方法耗时费力,我们的目标是设计一种用于快速测试的装置。观察到,在控制矿物回收和预浓缩散装矿石子样品方面,初步的空气分级机设计比空气夹具更具前景。因此,对空气分级器进行了修改,目的是生产10-30克样品,以捕获所有高密度金属颗粒(在这种情况下为钨)。研究了风速和进料速率对从合成钨-二氧化硅混合物中回收钨的影响。空气分级机在0.72 m / s的风速和160 g / min的进料速度下实现了97.7%的最佳高密度金属回收率。用铁代替钨作为致密金属,研究了密度对分类的影响,回收率从96.13%下降到20.82%。初步研究表明,使用实验室设计的空气分级机对金样品进行预浓缩是可行的。

著录项

  • 作者

    Shinde, Hrishikesh Vilas.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Chemical engineering.;Inorganic chemistry.;Analytical chemistry.
  • 学位 M.S.
  • 年度 2014
  • 页码 52 p.
  • 总页数 52
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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