Recovery of copper from WPCBs using slurry electrolysis with ionic liquid [BSO3HPy]•HSO4

被引:44
作者
Zhang, Yugai [1 ]
Chen, Mengjun [1 ]
Tan, Qiuxia [1 ]
Wang, Bin [1 ]
Chen, Shu [1 ]
机构
[1] Southwest Univ Sci & Technol, Minist Educ, Key Lab Solid Waste Treatment & Resource Recycle, Mianyang 621010, Peoples R China
基金
中国国家自然科学基金;
关键词
Copper; WPCBs; Ionic liquid; Slurry electrolysis; Recovery; PRINTED-CIRCUIT BOARDS; ELECTRONIC WASTE; METALS; ZINC; DISSOLUTION; EQUIPMENT; BEHAVIOR; POWDERS; ACIDS;
D O I
10.1016/j.hydromet.2017.11.004
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Due to rapid innovation in electronic industries, the average lifetime of electronic devices has been shortening drastically, leading to a massive electronic waste production (E-waste). As an essential part of E-waste, waste printed circuit boards (WPCBs) attract considerable concerns to seek a green and cost-effective recycling approach. In this study, a green chemical, [BSO3HPy]HSO4, was used to replace H2SO4 in a slurry electrolytic system in order to recover valuable metal copper from WPCBs in one-step. The results indicate that as more H2SO4 is replaced by [BSO3HPy]HSO4, copper recovery rate and current efficiency first increased and then decreased, while copper powders purity showed a reverse tendency: increases first and then decreases. The substitution of H2SO4 by [BSO3HPy]HSO4 could effectively reduce the particle size of the obtained powders. When 10% H2SO4 was replaced by [BSO3HPy]HSO4, the recovery rate, current efficiency, purity and particle size of copper powders were 90.94%, 70.68%, 81.69% and 2.30 mu m, respectively, thus reaching an optimal level. XRD results show that elemental Cu was the main mineral phase in the obtained powders. SEM and TEM results indicate that copper powders obtained in H2SO4-slurry-electrolysis system is dendritic and polycrystalline, whereas those obtained in an electrolytic solution with [BSO3HPy]HSO4 were in form of scattered mono-crystalline particles.
引用
收藏
页码:150 / 154
页数:5
相关论文
共 30 条
[1]  
Armand M, 2009, NAT MATER, V8, P621, DOI [10.1038/nmat2448, 10.1038/NMAT2448]
[2]   Integrated bioleaching of copper metal from waste printed circuit board-a comprehensive review of approaches and challenges [J].
Awasthi, Abhishek Kumar ;
Zeng, Xianlai ;
Li, Jinhui .
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2016, 23 (21) :21141-21156
[3]   An advanced study on the hydrometallurgical processing of waste computer printed circuit boards to extract their valuable content of metals [J].
Birloaga, Ionela ;
Coman, Vasile ;
Kopacek, Bernd ;
Veglio, Francesco .
WASTE MANAGEMENT, 2014, 34 (12) :2581-2586
[4]   Study on the influence of various factors in the hydrometallurgical processing of waste printed circuit boards for copper and gold recovery [J].
Birloaga, Ionela ;
De Michelis, Ida ;
Ferella, Francesco ;
Buzatu, Mihai ;
Veglio, Francesco .
WASTE MANAGEMENT, 2013, 33 (04) :935-941
[5]   Comparative study on copper leaching from waste printed circuit boards by typical ionic liquid acids [J].
Chen, Mengjun ;
Huang, Jinxiu ;
Ogunseitan, Oladele A. ;
Zhu, Nengming ;
Wang, Yan-min .
WASTE MANAGEMENT, 2015, 41 :142-147
[6]   Lead during the leaching process of copper from waste printed circuit boards by five typical ionic liquid acids [J].
Chen, Mengjun ;
Zhang, Sha ;
Huang, Jinxiu ;
Chen, Haiyan .
JOURNAL OF CLEANER PRODUCTION, 2015, 95 :142-147
[7]   Behaviour of zinc during the process of leaching copper from WPCBs by typical acidic ionic liquids [J].
Chen, Mengjun ;
Wang, Jiqin ;
Huang, Jinxiu ;
Chen, Haiyan .
RSC ADVANCES, 2015, 5 (44) :34921-34926
[8]   Micro-copper powders recovered from waste printed circuit boards by electrolysis [J].
Chu, Yingying ;
Chen, Mengjun ;
Chen, Shu ;
Wang, Bin ;
Fu, Kaibin ;
Chen, Haiyan .
HYDROMETALLURGY, 2015, 156 :152-157
[9]   Waste Printed Circuit Boards recycling: an extensive assessment of current status [J].
Ghosh, B. ;
Ghosh, M. K. ;
Parhi, P. ;
Mukherjee, P. S. ;
Mishra, B. K. .
JOURNAL OF CLEANER PRODUCTION, 2015, 94 :5-19
[10]   Effective treatment for electronic waste - Selective recovery of copper by combining electrochemical dissolution and deposition [J].
Haccuria, E. ;
Ning, P. ;
Cao, H. ;
Venkatesan, P. ;
Jin, W. ;
Yang, Y. ;
Sun, Z. .
JOURNAL OF CLEANER PRODUCTION, 2017, 152 :150-156