Resource utilization of spent ternary lithium-ions batteries: Synthesis of highly active manganese-based perovskite catalyst for toluene oxidation
-
Add time:07/26/2019 Source:sciencedirect.com
In order to recycle and reuse metal resources from spent ternary lithium batteries, manganese-based composite perovskite is synthesized from waste by citrate sol–gel method and is used as catalyst for VOC removal. The characterization results indicate that manganese-based composite perovskite catalyst has a crystal phase of LaMnO3, and owns higher specific surface area, better reductivity at low temperature, more abundant Mn4+ ions and lattice oxygen species than pure manganese perovskite catalyst. The results of catalytic evaluation show that manganese-based composite perovskite catalyst prepared from waste performs better catalytic performance of toluene oxidation in comparison with pure manganese perovskite. The effects of other cations existing in spent ternary lithium batteries are further investigated. The results imply that the catalytic performance can be significantly inhibited with the introduction of lithium ions, while appropriate amounts of copper, nickel and cobalt ions can improve the catalytic performance over pure manganese perovskite catalysts.
We also recommend Trading Suppliers and Manufacturers of Lithium manganese nickel oxide (cas 12031-75-3). Pls Click Website Link as below: cas 12031-75-3 suppliers
Prev:Performance enhancement of lithium-polysulphide batteries by atomic layer deposition of LITHIUM TANTALATE (cas 12031-66-2) on sulphide solid electrolytes
Next:Development of manganese-rich cathodes as alternatives to nickel-rich chemistries) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Investigation of the influence of temperature on the degradation mechanism of commercial nickel manganese cobalt oxide-type lithium-ion cells during long-term cycle tests08/02/2019
- Long cycle life lithium ion battery with lithium nickel cobalt manganese oxide (NCM) cathode08/01/2019
- Defining role of the surface and bulk contributions in camphoric carbon grafted lithium nickel manganese oxide powders for lithium ion batteries07/31/2019
- Cycle aging studies of lithium nickel manganese cobalt oxide-based batteries using electrochemical impedance spectroscopy07/30/2019
- Terthiophene as electrolyte additive for stabilizing lithium nickel manganese oxide cathode for high energy density lithium-ion batteries07/29/2019
- Surface coating of spinel LiMn2O4 cathode electrode with lithium–nickel–manganese-oxide by RF sputtering method for lithium-ion batteries07/28/2019
- Development of manganese-rich cathodes as alternatives to nickel-rich chemistries07/27/2019
-
Health and Chemical more >


