Pyrolysis is an effective method to remove organics (e.g. electrolytes and binders) from spent lithium-ion battery (LIB). In this study, the co-pyrolysis characteristics of fluorine-containing substances and active materials from LIB were investigated using thermogravimetric-differential scanning calorimetry (TG-DSC), infrared spectroscopy (IR), and mass spectrometry (MS) analysis. Associated with the pyrolysis, active materials adsorb the residues of electrolyte on the surface and into the pores (20-200 degrees C), while polyvinylidene fluoride (PVDF) forms a liquid film to cover the local surface of active materials (400-500 degrees C). These interactions prevent deep removal of organics, leaving fluorine-containing contaminants in active...
Full-component pyrolysis has been proven to be a prospective method for the disposal of organic matt...
Selective leaching of Li from spent LIBs thermally pretreated by pyrolysis and incineration between ...
The stability vs. aging of Li2FeSiO4 (LFS) cathode material in fluorine-based electrolytes, especial...
Pyrolysis is an effective method to remove organics (e.g. electrolytes and binders) from spent lithi...
Thermal treatment offers an alternative method for the separation of Al foil and cathode materials d...
It is now well established that the presence of organic compounds (PVDF binder and electrolyte) on t...
The lithium-ion battery (LIB) recycling industry is currently under development to improve the yield...
The recovery of cathode and anode materials plays an important role in the recycling process of spen...
In several industrial Lithium-ion batteries recycling processes, a thermal treatment with oxidative ...
Using flame retardants (FRs) in lithium ion battery (LIB) electrolytes is usually a tradeoff between...
Separating cathode material and Al foil from spent lithium-ion batteries (LIBs) is a critical step f...
The increased demand for Li-ion batteries has prompted the scientific community to improve recycling...
Batteries, in particular lithium-ion (Li-ion) batteries, are seen as an alternative to fossil fuels ...
In the last few years the use of Li-ion batteries has increased rapidly, powering small as well as l...
The thermal decomposition of LiPF6 in the solid state and as solutions in dialkylcarbonates has been...
Full-component pyrolysis has been proven to be a prospective method for the disposal of organic matt...
Selective leaching of Li from spent LIBs thermally pretreated by pyrolysis and incineration between ...
The stability vs. aging of Li2FeSiO4 (LFS) cathode material in fluorine-based electrolytes, especial...
Pyrolysis is an effective method to remove organics (e.g. electrolytes and binders) from spent lithi...
Thermal treatment offers an alternative method for the separation of Al foil and cathode materials d...
It is now well established that the presence of organic compounds (PVDF binder and electrolyte) on t...
The lithium-ion battery (LIB) recycling industry is currently under development to improve the yield...
The recovery of cathode and anode materials plays an important role in the recycling process of spen...
In several industrial Lithium-ion batteries recycling processes, a thermal treatment with oxidative ...
Using flame retardants (FRs) in lithium ion battery (LIB) electrolytes is usually a tradeoff between...
Separating cathode material and Al foil from spent lithium-ion batteries (LIBs) is a critical step f...
The increased demand for Li-ion batteries has prompted the scientific community to improve recycling...
Batteries, in particular lithium-ion (Li-ion) batteries, are seen as an alternative to fossil fuels ...
In the last few years the use of Li-ion batteries has increased rapidly, powering small as well as l...
The thermal decomposition of LiPF6 in the solid state and as solutions in dialkylcarbonates has been...
Full-component pyrolysis has been proven to be a prospective method for the disposal of organic matt...
Selective leaching of Li from spent LIBs thermally pretreated by pyrolysis and incineration between ...
The stability vs. aging of Li2FeSiO4 (LFS) cathode material in fluorine-based electrolytes, especial...