共 27 条
[1]
[2]
Hydrothermal preparation and performance of LiFePO 4 by using Li 3 PO 4 recovered from spent cathode scraps as Li source.[J].Xuan Wang;Xianyou Wang;Rui Zhang;Yu Wang;Hongbo Shu.Waste Management.2018,
[3]
Direct regeneration of recycled cathode material mixture from scrapped LiFePO 4 batteries.[J].Xuelei Li;Jin Zhang;Dawei Song;Jishun Song;Lianqi Zhang.Journal of Power Sources.2017,
[4]
A stepwise recovery of metals from hybrid cathodes of spent Li-ion batteries with leaching-flotation-precipitation process.[J].Yanfang Huang;Guihong Han;Jiongtian Liu;Wencui Chai;Wenjuan Wang;Shuzhen Yang;Shengpeng Su.Journal of Power Sources.2016,
[5]
A novel process to recycle spent LiFePO4 for synthesizing LiFePO4/C hierarchical microflowers.[J].Doucheng Bian;Yonghui Sun;Sheng Li;Yuan Tian;Zeheng Yang;Xiaoming Fan;Weixin Zhang.Electrochimica Acta.2016,
[6]
Bioleaching of valuable metals Li; Co; Ni and Mn from spent electric vehicle Li-ion batteries for the purpose of recovery.[J].Yayun Xin;Xingming Guo;Shi Chen;Jing Wang;Feng Wu;Baoping Xin.Journal of Cleaner Production.2016,
[7]
Hydrometallurgical process for the recovery of high value metals from spent lithium nickel cobalt aluminum oxide based lithium-ion batteries.[J].M. Joulié;R. Laucournet;E. Billy.Journal of Power Sources.2014,
[8]
Heat treatment of LiCoO 2 recovered from cathode scraps with solvent method.[J].Dawei Song;Xiaoqing Wang;Hehe Nie;Hua Shi;Dongge Wang;Fenxia Guo;Xixi Shi;Lianqi Zhang.Journal of Power Sources.2014,

