Recycling strategies for renewable graphite and other carbon nanomaterials from used batteries: A review

Abhilash and M. Maheswari, Uma and Reddy, Kakarla Raghava and Aminabhavi, Tejraj M. and Aravindan, Vanchiappan and Meshram, Pratima (2025) Recycling strategies for renewable graphite and other carbon nanomaterials from used batteries: A review. Journal of Cleaner Production, 493 (9.8). pp. 1-20.

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Abstract

Recycling spent/used batteries can solve economic and environmental issues regarding the availability of
graphite and resource depletion since the demand for graphite is growing with exponential technologies. Various
batteries, including primary (manganese, alkaline) and secondary (lithium-ion, nickel-based batteries, vanadium
redox flow batteries, sodium-sulfur batteries, lead acid batteries, electrochemical batteries, and supercapacitors),
have been taken into consideration as a source of graphite. The graphite recovered must be converted to useable
form like graphite oxide/graphene oxide or further as reduced graphene oxide for its high electrochemical
property imparted to lithium-ion batteries (LIBs) via thermal, chemical and mechanical routes. The generated
forms of graphite or carbon nanomaterials or carbon nanotubes (CNTs) have multiple merits viz., productivity,
electrical conductivity and higher capacitance, over pristine, natural and synthetic graphite. These methods have
shown high potential to prepare graphene oxide making it useful in photocatalysis, electronics, energy storage
and sensors. Apart from the processing methods, mechanism, and property evaluation, a material flow analysis of
recycling these batteries to recover graphite and the energy/cost savings are also illustrated.

Item Type: Article
Uncontrolled Keywords: Graphite,Carbon nanomaterials, Renewable carbon, Spent batteries,Recycling, Energy storage supercapacitors, Rechargeable batteries
Subjects: Minerals and Mining
Chemical Engineering
Waste Management
Divisions: Metal Extraction and Forming
Depositing User: Dr. Pratima Meshram
Date Deposited: 23 Apr 2025 10:06
Last Modified: 26 Aug 2025 04:36
URI: http://eprints.nmlindia.org/id/eprint/9733

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