9. Conclusion
The recycling industry is positioning itself to receive a large flow of used batteries. Technologies are being put in place to recover all their components, not just the precious metals, the proportion of which is rapidly diminishing. In the space of ten years, we must move on from the age of pyrometallurgy to that of dismantling and robotized sorting of batteries, with component recovery at the highest level (figure 14 ).
Exclusive to subscribers. 97% yet to be discovered!
You do not have access to this resource.
Click here to request your free trial access!
Already subscribed? Log in!
The Ultimate Scientific and Technical Reference
This article is included in
Environment
This offer includes:
Knowledge Base
Updated and enriched with articles validated by our scientific committees
Services
A set of exclusive tools to complement the resources
Practical Path
Operational and didactic, to guarantee the acquisition of transversal skills
Doc & Quiz
Interactive articles with quizzes, for constructive reading
Conclusion
Bibliography
Regulations
Decree no. 2015-849 of July 10, 2015 on the marketing of batteries and accumulators and the collection and treatment of their waste.
Décret n° 2009-1139 du 22 septembre 2009 transposant la directive européenne 2006/66/CE relative aux piles et accumulateurs ainsi que aux déchets de piles et d'accumulateurs.
The decree is codified in articles R. 543-124 to R. 543-134 of the French...
Patents
Method for preparing nickel and cobalt doped lithium manganate by using waste and old lithium ionic cell as raw material CN200810198972.
A Method of Recycling Valuable Metal from Waste and Old Lithium ion Battery. CN108987841A, 2018.
Method for recycling nickel-cobalt-manganese ternary anode material WO2014/154152A1.
Exclusive to subscribers. 97% yet to be discovered!
You do not have access to this resource.
Click here to request your free trial access!
Already subscribed? Log in!
The Ultimate Scientific and Technical Reference