AbstractThe metals in waste mobile-phone batteries may cause environmental pollution. In this paper, leaching with H2SO4+H2O2, P507 extraction, and sedimentation with oxalic acid and carbonic acid were used to deal with waste batteries and obtain cobalt and lithium salts by separation, which shows an easy and feasible method with less waste water disposal. The effects of sulphuric acid concentration, pH value, and lithium ions on the recovery were investigated. When the sulphuric acid concentration was over 0.4mol/L, the loss of cobalt increased significantly. If pH value of 3.5 was used, it was easy for cobalt and lithium separation with a low cobalt loss. Over several recycles, the recovery of lithium could reach the maximum with the lith...
Plenty of valuable metals especially cobalt is present in spent batteries. The conventional process ...
With the rapid development of the electric vehicle industry in recent years, the use of lithium batt...
International audienceThe growing demand for lithium-ion battery technology emphasizes the critical ...
AbstractThe metals in waste mobile-phone batteries may cause environmental pollution. In this paper,...
In view of the stringent environmental regulations, availability of limited natural resources and ev...
As the life of electronic products is reducing due to development of new technologies, it resulted i...
The aim of this paper was to propose and test a continuous cobalt recovery process from waste mobile...
Rechargeable lithium-ion batteries (LIBs) are widely used in consumer electronics and electric vehic...
This paper is an extended version of our paper published in 6th International Conference Quo Vadis R...
Nowadays, the quantity of these discarded equipments is increasing with disquieting rate all over th...
This research paper investigates a hydrometallurgical approach that includes the leaching of spent l...
The electric vehicle, power storage and mobile electronics industries are expected to grow exponenti...
This paper focuses on the extractive separation and selective recovery of cobalt, nickel and lithium...
The recycling of valuable metals from spent lithium-ion batteries (LIBs) is becoming increasingly im...
The recycling of valuable metals from spent lithium-ion batteries (LIBs) is becoming increasingly im...
Plenty of valuable metals especially cobalt is present in spent batteries. The conventional process ...
With the rapid development of the electric vehicle industry in recent years, the use of lithium batt...
International audienceThe growing demand for lithium-ion battery technology emphasizes the critical ...
AbstractThe metals in waste mobile-phone batteries may cause environmental pollution. In this paper,...
In view of the stringent environmental regulations, availability of limited natural resources and ev...
As the life of electronic products is reducing due to development of new technologies, it resulted i...
The aim of this paper was to propose and test a continuous cobalt recovery process from waste mobile...
Rechargeable lithium-ion batteries (LIBs) are widely used in consumer electronics and electric vehic...
This paper is an extended version of our paper published in 6th International Conference Quo Vadis R...
Nowadays, the quantity of these discarded equipments is increasing with disquieting rate all over th...
This research paper investigates a hydrometallurgical approach that includes the leaching of spent l...
The electric vehicle, power storage and mobile electronics industries are expected to grow exponenti...
This paper focuses on the extractive separation and selective recovery of cobalt, nickel and lithium...
The recycling of valuable metals from spent lithium-ion batteries (LIBs) is becoming increasingly im...
The recycling of valuable metals from spent lithium-ion batteries (LIBs) is becoming increasingly im...
Plenty of valuable metals especially cobalt is present in spent batteries. The conventional process ...
With the rapid development of the electric vehicle industry in recent years, the use of lithium batt...
International audienceThe growing demand for lithium-ion battery technology emphasizes the critical ...