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Closed-Loop Recycling of Copper from Waste Printed Circuit Boards Using Bioleaching and Electrowinning Processes

机译:使用生物浸入和电陶油宁工艺从废印刷电路板闭环回收铜

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摘要

In the present study, a model of closed-loop recycling of copper from PCBs is demonstrated, which involves the sequential application of bioleaching and electrowinning to selectively extract copper. This approach is proposed as part of the solution to resolve the challenging ever-increasing accumulation of electronic waste, e-waste, in the environment. This work is targeting copper, the most abundant metal in e-waste that represents up to 20% by weight of printed circuit boards (PCBs). In the first stage, bioleaching was tested for different pulp densities (0.25-1.00%w/v) and successfully used to extract multiple metals from PCBs using the acidophilic bacterium, Acidithiobacillus ferrooxidans.In the second stage, the method focused on the recovery of copper from the bioleachate by electrowinning. Metallic copper foils were formed, and the results demonstrated that 75.8% of copper available in PCBs had been recovered as a high quality copper foil, with 99 + % purity, as determined by energy dispersive X-ray analysis and Inductively-Coupled Plasma Optical Emission Spectrometry. This model of copper extraction, combining bioleaching and electrowinning, demonstrates a closed-loop method of recycling that illustrates the application of bioleaching in the circular economy. The copper foils have the potential to be reused, to form new, high value copper clad laminate for the production of complex printed circuit boards for the electronics manufacturing industry.
机译:在本研究中,证明了来自PCB的铜的闭环回收模型,这涉及顺序施加生物浸出和电解选择性提取铜。这种方法是解决解决环境中的挑战性越来越多的累积,电子废物在环境中的一部分的一部分。这项工作是针对铜的铜,电子废物中最丰富的金属,占印刷电路板(PCB)的重量增加了20%。在第一阶段,对不同的纸浆密度测试生物浸渍(0.25-1.00%w / v)并成功地使用嗜酸性细菌,酸酐脱氧氧化物从PCB中提取多种金属。在第二阶段,该方法集中于恢复通过电灌输从生物展开盐的铜。形成金属铜箔,结果表明,通过能量分散X射线分析和电感耦合等离子体光学发射测定,将PCB中可用的75.8%的PCB中可用的铜作为高质量的铜箔回收。光谱法。这种铜提取模型,组合生物浸入和电瓦宁,证明了循环回收的闭环方法,其说明了生物浸出在循环经济中的应用。铜箔具有可重复使用的可能性,形成新的高价值覆铜层压板,用于生产用于电子制造业的复杂印刷电路板。

著录项

  • 来源
    《Waste and biomass valorization》 |2021年第6期|3125-3136|共12页
  • 作者单位

    Coventry Univ Bioleaching Grp Priory St Coventry CV1 5FB W Midlands England|Coventry Univ Fac Hlth & Life Sci Ctr Sport Exercise & Life Sci Priory St Coventry CV1 5FB W Midlands England|Network 2 Supplies N2S Ltd Network House Western Way Bury St Edmunds IP33 3SP Suffolk England;

    Coventry Univ Bioleaching Grp Priory St Coventry CV1 5FB W Midlands England|Coventry Univ Fac Engn Environm & Comp Funct Mat Grp IFTC Priory St Coventry CV1 5FB W Midlands England;

    Coventry Univ Bioleaching Grp Priory St Coventry CV1 5FB W Midlands England|Coventry Univ Fac Hlth & Life Sci Ctr Sport Exercise & Life Sci Priory St Coventry CV1 5FB W Midlands England|Network 2 Supplies N2S Ltd Network House Western Way Bury St Edmunds IP33 3SP Suffolk England;

    Ecole Natl Super Chim Rennes 11 Allee Beaulieu CS 50837 F-35708 Rennes 7 France;

    Coventry Univ Bioleaching Grp Priory St Coventry CV1 5FB W Midlands England|Coventry Univ Fac Hlth & Life Sci Ctr Sport Exercise & Life Sci Priory St Coventry CV1 5FB W Midlands England;

    Coventry Univ Bioleaching Grp Priory St Coventry CV1 5FB W Midlands England|Coventry Univ Fac Hlth & Life Sci Ctr Sport Exercise & Life Sci Priory St Coventry CV1 5FB W Midlands England;

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

    Bioleaching; Copper recovery; Electrowinning; Printed circuit boards; Recycling; WEEE;

    机译:生物浸润;铜回收;电灌输;印刷电路板;回收;WEEE;

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