Recycling of spent lithium-ion batteries has attracted wide attention because of their high content of valuable and hazardous metals. One of the difficulties for effective metal recovery is the separation of different metals from the solution after leaching. In this research, a full hydrometallurgical process is developed to selectively recover valuable metals (Ni, Co and Li) from cathode scrap of spent lithium ion batteries. By introducing ammonia-ammonium sulphate as the leaching solution and sodium sulphite as the reductant, the total selectivity of Ni, Co and Li in the first-step leaching solution is more than 98.6% while it for Mn is only 1.36%. In detail understanding of the selective leaching process is carried out by investigating t...
With the undergoing unprecedented development of lithium-ion batteries (LIBs), the recycling of end-...
A process for the recovery of Mn from a waste of spent alkaline batteries using sulfuric acid and hy...
Rapid growth in the market for batteries is imperative to meet global demand. The lack of economical...
The recovery of valuable metals in spent lithium-ion batteries (LIBs) are not only environmentally s...
A novel hydrometallurgical route was developed to recover valuable metals from spent lithium-ion bat...
In this paper, a sustainable process to recover valuable metals from spent lithium ion batteries (LI...
This work is focussed on the processing of cathodic active material of spent lithium ion batteries (...
With the continued growth in lithium ion batteries (LIBs) usage in recent years, the recycling of sp...
The present work focuses on the processing of cathode active material of spent lithium ion batteries...
With the development trend and technological progress of lithium batteries, the battery market is bo...
This research paper investigates a hydrometallurgical approach that includes the leaching of spent l...
AbstractAcid leaching for different types of mixed spent Li-ion mobile batteries is carried out afte...
The online version of this article (https://doi.org/10.1007/s11837-019-03775-3) contains supplementa...
A comparison of various approaches evaluated to process spent lithium ion batteries to extract metal...
Traditional technologies for the recycling of spent lithium-ion batteries (LIBs) mainly focus on red...
With the undergoing unprecedented development of lithium-ion batteries (LIBs), the recycling of end-...
A process for the recovery of Mn from a waste of spent alkaline batteries using sulfuric acid and hy...
Rapid growth in the market for batteries is imperative to meet global demand. The lack of economical...
The recovery of valuable metals in spent lithium-ion batteries (LIBs) are not only environmentally s...
A novel hydrometallurgical route was developed to recover valuable metals from spent lithium-ion bat...
In this paper, a sustainable process to recover valuable metals from spent lithium ion batteries (LI...
This work is focussed on the processing of cathodic active material of spent lithium ion batteries (...
With the continued growth in lithium ion batteries (LIBs) usage in recent years, the recycling of sp...
The present work focuses on the processing of cathode active material of spent lithium ion batteries...
With the development trend and technological progress of lithium batteries, the battery market is bo...
This research paper investigates a hydrometallurgical approach that includes the leaching of spent l...
AbstractAcid leaching for different types of mixed spent Li-ion mobile batteries is carried out afte...
The online version of this article (https://doi.org/10.1007/s11837-019-03775-3) contains supplementa...
A comparison of various approaches evaluated to process spent lithium ion batteries to extract metal...
Traditional technologies for the recycling of spent lithium-ion batteries (LIBs) mainly focus on red...
With the undergoing unprecedented development of lithium-ion batteries (LIBs), the recycling of end-...
A process for the recovery of Mn from a waste of spent alkaline batteries using sulfuric acid and hy...
Rapid growth in the market for batteries is imperative to meet global demand. The lack of economical...