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Bioleaching of copper from pre and post thermally activated low grade chalcopyrite contained ball mill spillage

机译:热活化低品位黄铜矿前后的铜生物浸出法

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摘要

Bioleaching of a low grade chalcopyrite (ball mill spillage material) was tested for copper recovery in shake flasks. The original samples (as received) were thermally activated (600°C, 30 min) to notice the change in physico-chemical and mineralogical characteristics of the host rock and subsequently its effect on copper recovery. A mixed culture of acidophilic chemolithotrophic bacterial consortium predominantly entailing Acidithiobacillus fer-rooxidans strain was used for bioleaching studies and optimization of process parameters of both original and thermally activated samples. Mineralogical characterization studies indicated the presence of chalcopyrite, pyrite in the silicate matrix of the granitic rock. Field emission scanning electron microscopy coupled with Energy dispersive spectroscopy (FESEM-EDS) and X-ray Fluorescence (XRF) analysis indicated mostly SiO_2. With pH 2, pulp density 10% w/v, inoculum 10% v/v, temperature 30°C, 150 r·min ~(-1), 49% copper could be recovered in 30 days from the finest particle size (-1 + 0.75 mm) of the original spillage sample. Under similar conditions 95% copper could be recovered from the thermally activated sample with the same size fraction in 10 days. The study revealed that thermal activation leads to volume expansion in the rock with the development of cracks, micro and macro pores on its surface, thereby enabling bacterial solution to penetrate more easily into the body, facilitating enhanced copper dissolution.
机译:测试了低品位黄铜矿(球磨机溢出物)的生物浸出,以测定摇瓶中的铜回收率。将原始样品(收到的样品)进行热活化(600°C,30分钟),以观察基质岩石的理化和矿物学特征的变化及其随后对铜回收的影响。嗜酸性化营养细菌联合体的混合培养主要用于酸性铁硫氧化铁细菌菌株,用于生物浸出研究和优化原始和热活化样品的工艺参数。矿物学表征研究表明,花岗岩岩石的硅酸盐基质中存在黄铜矿,黄铁矿。场发射扫描电子显微镜,能量色散光谱法(FESEM-EDS)和X射线荧光光谱(XRF)分析表明,主要是SiO_2。 pH为2时,纸浆密度为10%w / v,接种物为10%v / v,温度为30°C,150 r·min〜(-1),可以在30天内从最细的颗粒中回收49%的铜(- 1 + 0.75毫米)的原始溢出样品。在相似的条件下,可以在10天内从热活化的样品中回收95%的铜,且铜的粒度分数相同。研究表明,热活化会导致岩石体积膨胀,并在其表面形成裂纹,微孔和大孔,从而使细菌溶液更容易渗透到体内,从而促进铜的溶解。

著录项

  • 来源
    《Frontiers of environmental science & eng》 |2013年第2期|281-293|共13页
  • 作者单位

    CSIR-Institute of Minerals and Materials Technology, Bhubaneswar 751013, India ,Department of Botany, North Orissa University, Baripada 757003, India;

    CSIR-Institute of Minerals and Materials Technology, Bhubaneswar 751013, India;

    Department of Botany, North Orissa University, Baripada 757003, India;

    Regional Center of Central Tuber Crops Research Institute, Bhubaneswar 751019, India;

    CSIR-Institute of Minerals and Materials Technology, Bhubaneswar 751013, India;

    CSIR-Institute of Minerals and Materials Technology, Bhubaneswar 751013, India;

    CSIR-Institute of Minerals and Materials Technology, Bhubaneswar 751013, India;

    CSIR-Institute of Minerals and Materials Technology, Bhubaneswar 751013, India;

    CSIR-Institute of Minerals and Materials Technology, Bhubaneswar 751013, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ball mill spillage; thermal activation; bioleach-ing; copper;

    机译:球磨机泄漏;热活化生物浸出铜;

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