4.8 Article

Application of Vacuum Metallurgy to Separate Pure Metal from Mixed Metallic Particles of Crushed Waste Printed Circuit Board Scraps

期刊

ENVIRONMENTAL SCIENCE & TECHNOLOGY
卷 42, 期 20, 页码 7676-7681

出版社

AMER CHEMICAL SOC
DOI: 10.1021/es801205b

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资金

  1. National High Technology Research and Development Program of China [2006AA06Z364]
  2. Program for New Century Excellent Talents in University
  3. Research Fund [NCET-05-0404]
  4. Doctoral Program of Higher Education [20060248058]

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The principle of separating pure metal from mixed metallic particles (MMPs) by vacuum metallurgy is that the vapor pressures of various metals at the same temperature are different. As a result, the metal with high vapor pressure and low boiling point can be separated from the mixed metals through distillation or sublimation, and then it can be recycled through condensation under a certain condition. The vacuum metallurgy separation (VMS) of MMPs of crushed waste printed circuit boards (WPCBs) has been studied in this paper. Theoretical analyses show that the MMPs (copper, zinc, bismuth, lead, and indium, for example) can be separated by vacuum metallurgy. The copper particles (0.15-0.20 mm) and zinc particles (<0.30 mm) were chosen to simulate the MMPs of crushed WPCBs. Experimental results show that the separated efficiency of zinc in the copper-rich particles achieves 96.19 wt % when the vacuum pressure is 0.01-0.10 Pa, the heating temperature is 1123 K, and the heating time is 105 min. Under this operation condition, the separated efficiency of zinc in the copper-rich particles from crushed WPCBs achieves 97.00 wt % and the copper purity increases from 90.68 to 99.84 wt %.

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