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首页> 外文期刊>Waste Management >Precious metal recovery from waste printed circuit boards using cyanide and non-cyanide lixiviants - A review
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Precious metal recovery from waste printed circuit boards using cyanide and non-cyanide lixiviants - A review

机译:使用氰化物和非氰化物润湿剂从废印刷电路板中回收贵金属-评论

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摘要

Waste generated by the electrical and electronic devices is huge concern worldwide. With decreasing life cycle of most electronic devices and unavailability of the suitable recycling technologies it is expected to have huge electronic and electrical wastes to be generated in the coming years. The environmental threats caused by the disposal and incineration of electronic waste starting from the atmosphere to the aquatic and terrestrial living system have raised high alerts and concerns on the gases produced (dioxins, furans, polybrominated organic pollutants, and polycyclic aromatic hydrocarbons) by thermal treatments and can cause serious health problems if the flue gas cleaning systems are not developed and implemented. Apart from that there can be also dissolution of heavy metals released to the ground water from the landfill sites. As all these electronic and electrical waste do posses richness in the metal values it would be worth recovering the metal content and protect the environmental from the pollution. Cyanide leaching has been a successful technology worldwide for the recovery of precious metals (especially Au and Ag) from ores/concentrates/waste materials. Nevertheless, cyanide is always preferred over others because of its potential to deliver high recovery with a cheaper cost. Cyanidation process also increases the additional work of effluent treatment prior to disposal. Several non-cyanide leaching processes have been developed considering toxic nature and handling problems of cyanide with non-toxic lixiviants such as thiourea, thiosulphate, aqua regia and iodine. Therefore, several recycling technologies have been developed using cyanide or non-cyanide leaching methods to recover precious and valuable metals.
机译:电气和电子设备产生的废物已成为全球关注的焦点。随着大多数电子设备生命周期的缩短和适当回收技术的缺乏,预计在未来几年中将产生大量电子和电气废物。从大气到水生和陆地生物系统的处置和焚烧电子废物所造成的环境威胁引起高度关注,并引起人们对热处理产生的气体(二恶英,呋喃,多溴化有机污染物和多环芳烃)的关注。如果不开发和实施烟气清洁系统,可能会导致严重的健康问题。除此之外,还可能会溶解从填埋场释放到地下水中的重金属。由于所有这些电子和电气废弃物确实具有丰富的金属价值,因此有必要回收金属含量并保护环境免受污染。氰化物浸出是一种成功的技术,可从矿石/精矿/废料中回收贵金属(尤其是金和银)。然而,由于氰化物具有以较低的成本提供高回收率的潜力,因此总是比其他氰化物更受青睐。氰化过程还增加了处理前的废水处理工作。考虑到毒性性质和氰化物与无毒助剂如硫脲,硫代硫酸盐,王水和碘的处理问题,已经开发了几种非氰化物浸出方法。因此,已经开发出了几种使用氰化物或非氰化物浸出方法来回收贵重金属的回收技术。

著录项

  • 来源
    《Waste Management》 |2015年第11期|258-271|共14页
  • 作者单位

    Mineral-Metal Recovery and Recycling (MMR&R) Research Group, Mineral Processing Div., Dept. of Mining Eng., Suleyman Demirel University, TR32260 Isparta, Turkey;

    Mineral-Metal Recovery and Recycling (MMR&R) Research Group, Mineral Processing Div., Dept. of Mining Eng., Suleyman Demirel University, TR32260 Isparta, Turkey;

    Mineral-Metal Recovery and Recycling (MMR&R) Research Group, Mineral Processing Div., Dept. of Mining Eng., Suleyman Demirel University, TR32260 Isparta, Turkey,Department of Microbiology, School of Life Sciences, Central University of Rajasthan, Bandar Sindri-305817, NH-8, Kishangarh Tehsil, Ajmer district, Rajasthan, India;

    Mineral-Metal Recovery and Recycling (MMR&R) Research Group, Mineral Processing Div., Dept. of Mining Eng., Suleyman Demirel University, TR32260 Isparta, Turkey;

    Mineral-Metal Recovery and Recycling (MMR&R) Research Group, Mineral Processing Div., Dept. of Mining Eng., Suleyman Demirel University, TR32260 Isparta, Turkey;

    Mineral-Metal Recovery and Recycling (MMR&R) Research Group, Mineral Processing Div., Dept. of Mining Eng., Suleyman Demirel University, TR32260 Isparta, Turkey;

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

    E-waste; Cyanide; Metal; Thiosulphate; Thiourea; Precious;

    机译:电子垃圾氰化物;金属;硫代硫酸盐;硫脲;珍贵;

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