PDF

Waste Zinc–Carbon Battery Recycling: Focus on Total Material Recovery

Anatoliy Ranskiy, Olga Gordienko

2024Englishbattery recyclingzinc-carbon batteriesresource recoveryhydrometallurgypyrometallurgycircular economy

Abstract

Language:

Currently, less attention is paid to zinc–carbon batteries, although they are still widely used and are among the major types of batteries collected and recycled. The recycling technologies currently in use do not allow the complete recovery of resources, are not self-sufficient and require additional financing. Therefore, this paper aims to study the possibility of complete recycling of waste zinc–carbon batteries and to suggest the practical use of the final products generated in the recycling process. The possibility of complex processing of spent zinc–carbon batteries using mechanical separation and processing of the battery’s components (steel case, zinc electrode, graphite electrode, polypropylene and paper insulators) is justified. The separation of spent electrolytes from other components of batteries with hydrochloric acid was studied. It was shown that the extraction of Zn2+ and NH4+ cations takes place following the addition of an equivalent amount of Na3PO4 solution and water-insoluble NH4ZnPO4 salt sedimentation. Waste agglomerate (mixture of MnO2, MnO(OH), and graphite) was regenerated to its initial composition (MnO2, graphite) at a temperature of 300–325 ◦C; manganese (III) hydroxide was oxidized to manganese (IV) dioxide. Thermal destruction of polypropylene and paper insulators with additional introduction of polyethylene into the primary mixture produced pyrolysis liquid, pyrocarbon and pyrolysis gas as products. The practical use of the products.

Download

Cite This Work

@article{5e1cdb06-17b5-46b9-b748-557923c91a1d,
  title={Waste Zinc–Carbon Battery Recycling: Focus on Total Material Recovery},
  author={Anatoliy Ranskiy and Olga Gordienko},
  year={2024},
  language={English}
}
TY  - JOUR
TI  - Waste Zinc–Carbon Battery Recycling: Focus on Total Material Recovery
AU  - Anatoliy Ranskiy
AU  - Olga Gordienko
PY  - 2024
LA  - English
ER  -

Similar Items

Summary of Pretreatment of Waste Lithium-Ion Batteries and Recycling of Valuable Metal Materials: A Review

Linye Li, Yuzhang Li

The recycling of used lithium-ion batteries has become a growing concern. As a large number of rare metal elements are present in waste lithium-ion ba

2024EnglishPDF

A Review of Lithium-Ion Battery Recycling: Technologies, Sustainability, and Open Issues

Alessandra Zanoletti, Eleonora Carena

Lithium-ion batteries (LIBs) are a widely used energy storage technology as they possess high energy density and are characterized by the reversible i

2024EnglishPDF

Life Cycle Impacts of Recycling of Black Mass Obtained from End-of-Life Zn-C and Alkaline Batteries Using Waelz Kiln

Katarzyna Klejnowska, Mateusz Sydow

The utilization of end-of-life batteries (including Zn-C and alkaline batteries) is one of the areas that need to be perfected in order to provide env

2023EnglishPDF

Recycling of Printed Circuit Boards to Recover Critical Materials

Md Kaviul Islam, Anirudha Karati

The printed circuit board (PCB), a central component of most electronic devices, represents a significant fraction of the electronic product waste str

2026EnglishPDF

New Process for Efficient Separation and Comprehensive Recovery of Valuable Metals from Jarosite Residues

Qi Zhou, Jian Pan

Jarosite residue (JR), a hazardous solid waste generated in non-ferrous metallurgy, poses significant environmental challenges due to its large volume

2025EnglishPDF

PRODUCTION OF TECHNOLOGY METALS FROM WASTE ELECTRONICS

Maja Mandić, Jovana Đokić, Nataša Gajić, Jelena Uljarević, Željko Kamberović

The rising criticality of technologically inevitably metals and the continuous growth of the waste electronics promote a scientifi c need for developm

2019enPDF