The selective extraction of lithium from spent lithium-ion batteries (LIBs) is significant for combating potential lithium deficiencies and for providing environmental protection by enabling highly selective Li extraction through a short path. Herein, we demonstrate a thermochemically driven process for spent LiNi1/3Co1/3Mn1/3O2 (NCM) batteries by systematically understanding the conversion mechanisms and controlling the chlorination behavior during chlorinated roasting. First, software simulations based on thermochemical differences are introduced to select customized chloride salts for the thermal treatment of spent NCM materials. The thermal behavior characterization studies are combined with thermochemical calculations, showing that CaC...
Spent lithium-ion battery recycling has attracted significant attention because of its importance in...
Chlorination roasting was used to extract lithium as lithium chloride from β-spodumene. The roasting...
Lithium aluminum layered double hydroxide chlorides (LADH-Cl) have been widely used for lithium extr...
Recently, many studies have been conducted on the materialization of spent batteries. In conventiona...
The preferentially selective extraction of Li+ from spent layered transition metal oxide (LiMO2, M =...
The preferentially selective extraction of Li+ from spent layered transition metal oxide (LiMO2, M =...
Lithium is one of the most valuable elements within lithium-ion batteries, but it is also one of the...
With the undergoing unprecedented development of lithium-ion batteries (LIBs), the recycling of end-...
International audienceProcessing spodumene for lithium is challenging as it requires a high temperat...
Traditional technologies for the recycling of spent lithium-ion batteries (LIBs) mainly focus on red...
Chlorination roasting was examined as an alternative method to recover lithium, manganese, nickel an...
The traditional acid leaching process for releasing valuable metals from spent lithium-ion batteries...
In this study, a novel method that allows selective extraction of lithium and production of battery ...
In this study, a novel method that allows selective extraction of lithium and production of battery ...
Spent lithium-ion battery recycling has attracted significant attention because of its importance in...
Spent lithium-ion battery recycling has attracted significant attention because of its importance in...
Chlorination roasting was used to extract lithium as lithium chloride from β-spodumene. The roasting...
Lithium aluminum layered double hydroxide chlorides (LADH-Cl) have been widely used for lithium extr...
Recently, many studies have been conducted on the materialization of spent batteries. In conventiona...
The preferentially selective extraction of Li+ from spent layered transition metal oxide (LiMO2, M =...
The preferentially selective extraction of Li+ from spent layered transition metal oxide (LiMO2, M =...
Lithium is one of the most valuable elements within lithium-ion batteries, but it is also one of the...
With the undergoing unprecedented development of lithium-ion batteries (LIBs), the recycling of end-...
International audienceProcessing spodumene for lithium is challenging as it requires a high temperat...
Traditional technologies for the recycling of spent lithium-ion batteries (LIBs) mainly focus on red...
Chlorination roasting was examined as an alternative method to recover lithium, manganese, nickel an...
The traditional acid leaching process for releasing valuable metals from spent lithium-ion batteries...
In this study, a novel method that allows selective extraction of lithium and production of battery ...
In this study, a novel method that allows selective extraction of lithium and production of battery ...
Spent lithium-ion battery recycling has attracted significant attention because of its importance in...
Spent lithium-ion battery recycling has attracted significant attention because of its importance in...
Chlorination roasting was used to extract lithium as lithium chloride from β-spodumene. The roasting...
Lithium aluminum layered double hydroxide chlorides (LADH-Cl) have been widely used for lithium extr...