Recycle technology for recovering resources and products from waste printed circuit boards J Li, H Lu, J Guo, Z Xu, Y Zhou Environmental science & technology 41 (6), 1995-2000, 2007 | 606 | 2007 |
Environmentally-friendly oxygen-free roasting/wet magnetic separation technology for in situ recycling cobalt, lithium carbonate and graphite from spent LiCoO2/graphite lithium … J Li, G Wang, Z Xu Journal of hazardous materials 302, 97-104, 2016 | 517 | 2016 |
Novel approach for in situ recovery of lithium carbonate from spent lithium ion batteries using vacuum metallurgy J Xiao, J Li, Z Xu Environmental science & technology 51 (20), 11960-11966, 2017 | 354 | 2017 |
Recycling metals from lithium ion battery by mechanical separation and vacuum metallurgy J Xiao, J Li, Z Xu Journal of hazardous materials 338, 124-131, 2017 | 343 | 2017 |
Triboelectrostatic separation for granular plastic waste recycling: A review G Wu, J Li, Z Xu Waste management 33 (3), 585-597, 2013 | 294 | 2013 |
Application of corona discharge and electrostatic force to separate metals and nonmetals from crushed particles of waste printed circuit boards J Li, Z Xu, Y Zhou Journal of Electrostatics 65 (4), 233-238, 2007 | 203 | 2007 |
Generation and detection of metal ions and volatile organic compounds (VOCs) emissions from the pretreatment processes for recycling spent lithium-ion batteries J Li, G Wang, Z Xu Waste Management 52, 221-227, 2016 | 184 | 2016 |
Environmental friendly automatic line for recovering metal from waste printed circuit boards J Li, Z Xu Environmental science & technology 44 (4), 1418-1423, 2010 | 129 | 2010 |
Electrostatic separation for recovering metals and nonmetals from waste printed circuit board: problems and improvements J Wu, JIA Li, Z Xu Environmental science & technology 42 (14), 5272-5276, 2008 | 116 | 2008 |
Tribo-charging properties of waste plastic granules in process of tribo-electrostatic separation J Li, G Wu, Z Xu Waste management 35, 36-41, 2015 | 108 | 2015 |
A new two-roll electrostatic separator for recycling of metals and nonmetals from waste printed circuit board W Jiang, L Jia, X Zhen-Ming Journal of Hazardous Materials 161 (1), 257-262, 2009 | 104 | 2009 |
A novel process for recovering valuable metals from waste nickel− cadmium batteries K Huang, J Li, Z Xu Environmental science & technology 43 (23), 8974-8978, 2009 | 97 | 2009 |
Optimizing the operating parameters of corona electrostatic separation for recycling waste scraped printed circuit boards by computer simulation of electric field J Li, H Lu, S Liu, Z Xu Journal of hazardous materials 153 (1-2), 269-275, 2008 | 93 | 2008 |
Phenolic molding compound filled with nonmetals of waste PCBs J Guo, J Li, Q Rao, Z Xu Environmental Science & Technology 42 (2), 624-628, 2008 | 93 | 2008 |
An environmental friendly recovery production line of waste toner cartridges J Ruan, J Li, Z Xu Journal of hazardous materials 185 (2-3), 696-702, 2011 | 90 | 2011 |
Movement behavior in electrostatic separation: Recycling of metal materials from waste printed circuit board H Lu, J Li, J Guo, Z Xu Journal of materials processing technology 197 (1-3), 101-108, 2008 | 90 | 2008 |
Characterization and recycling of cadmium from waste nickel–cadmium batteries K Huang, J Li, Z Xu Waste management 30 (11), 2292-2298, 2010 | 79 | 2010 |
Enhancement of the recycling of waste Ni–Cd and Ni–MH batteries by mechanical treatment K Huang, J Li, Z Xu Waste Management 31 (6), 1292-1299, 2011 | 74 | 2011 |
Eddy current separation technology for recycling printed circuit boards from crushed cell phones J Li, Y Jiang, Z Xu Journal of Cleaner Production 141, 1316-1323, 2017 | 71 | 2017 |
Electrostatic separation for multi-size granule of crushed printed circuit board waste using two-roll separator J Wu, J Li, Z Xu Journal of hazardous materials 159 (2-3), 230-234, 2008 | 63 | 2008 |