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Recovery of materials from waste printed circuit boards by vacuum pyrolysis and vacuum centrifugal separation

机译:通过真空热解和真空离心分离从废印刷电路板上回收材料

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摘要

In this research, a two-step process consisting of vacuum pyrolysis and vacuum centrifugal separation was employed to treat waste printed circuit boards (WPCBs). Firstly, WPCBs were pyrolysed under vacuum condition at 600 ℃ for 30 min in a lab-scale reactor. Then, the obtained pyrolysis residue was heated under vacuum until the solder was melted, and then the molten solder was separated from the pyrolysis residue by the centrifugal force. The results of vacuum pyrolysis showed that the type-A of WPCBs (the base plates of which was made from cellulose paper reinforced phenolic resin) pyrolysed to form an average of 67.97 wt.% residue, 27.73 wt.% oil, and 4.30 wt.% gas; and pyrolysis of the type-B of WPCBs (the base plates of which was made from glass fiber reinforced epoxy resin) led to an average mass balance of 72.20 wt.% residue, 21.45 wt.% oil, and 6.35 wt.% gas. The results of vacuum centrifugal separation showed that the separation of solder was complete when the pyrolysis residue was heated at 400 ℃, and the rotating drum was rotated at 1200 rpm for 10 min. The pyrolysis oil and gas can be used as fuel or chemical feedstock after treatment. The pyrolysis residue after solder separation contained various metals, glass fibers and other inorganic materials, which could be recycled for further processing. The recovered solder can be reused directly and it can also be a good resource of lead and tin for refining.
机译:在这项研究中,采用由真空热解和真空离心分离组成的两步​​工艺来处理废印刷电路板(WPCB)。首先,在实验室规模的反应器中,将WPCB在600℃的真空条件下热解30分钟。然后,将获得的热解残渣在真空下加热直至焊料熔化,然后通过离心力将熔融的焊料与热解残渣分离。真空热解的结果表明,WPCB的A型(其底板由纤维素纸增强的酚醛树脂制成)热解形成平均67.97 wt。%的残留物,27.73 wt。%的油和4.30 wt。%的油。 % 加油站; B型WPCB的热解和热解(其基板由玻璃纤维增​​强环氧树脂制成)导致平均质量平衡为72.20 wt。%的残留物,21.45 wt。%的油和6.35 wt。%的气体。真空离心分离的结果表明,将热解残渣加热至400℃,转鼓以1200 rpm旋转10分钟,焊料的分离完成。处理后的热解油和天然气可用作燃料或化学原料。焊料分离后的热解残留物包含各种金属,玻璃纤维和其他无机材料,可以循环再利用以进行进一步处理。回收的焊料可以直接重复使用,也可以作为提炼铅和锡的良好资源。

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  • 来源
    《Waste Management》 |2010年第11期|p.2299-2304|共6页
  • 作者单位

    School of Chemistry and Chemical Engineering, Central South University,Changsha Hunan 410083, People's Republic of China;

    School of Chemistry and Chemical Engineering, Central South University,Changsha Hunan 410083, People's Republic of China;

    School of Chemistry and Chemical Engineering, Central South University,Changsha Hunan 410083, People's Republic of China;

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