Preprint of "Optimized Thermal Treatment of Lithium-Ion Battery Components as a Basis for Sustainable Pyrometallurgy"

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Autori principali: Pražanová, Anna, Paušová, Šárka, Bouzek, Karel
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Pražanová, Anna
Paušová, Šárka
Bouzek, Karel
author_facet Pražanová, Anna
Paušová, Šárka
Bouzek, Karel
contents <p>This paper describes an optimized low-temperature pyrometallurgical pre-treatment process for lithium-ion battery recycling. It identifies 500 °C as the ideal temperature for complete organic removal, preserving valuable materials like NMC cathodes, while reducing energy consumption and hazardous emissions. The work provides a practical, scalable, and cost-effective strategy to enhance battery recycling and support a circular economy for critical materials.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15863309
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Preprint of "Optimized Thermal Treatment of Lithium-Ion Battery Components as a Basis for Sustainable Pyrometallurgy"
Pražanová, Anna
Paušová, Šárka
Bouzek, Karel
VZ1
CVUT
214 021
214 024
lithium-ion battery
recycling
pyrometallurgy
high-temperature treatment
<p>This paper describes an optimized low-temperature pyrometallurgical pre-treatment process for lithium-ion battery recycling. It identifies 500 °C as the ideal temperature for complete organic removal, preserving valuable materials like NMC cathodes, while reducing energy consumption and hazardous emissions. The work provides a practical, scalable, and cost-effective strategy to enhance battery recycling and support a circular economy for critical materials.</p>
title Preprint of "Optimized Thermal Treatment of Lithium-Ion Battery Components as a Basis for Sustainable Pyrometallurgy"
topic VZ1
CVUT
214 021
214 024
lithium-ion battery
recycling
pyrometallurgy
high-temperature treatment
url https://doi.org/10.5281/zenodo.15863309