Gamal M. A. Mahran, Mohamed A. Gado
The significant increase in lithium batteries consumption produces a significant quantity of discarded lithium-ion batteries (LIBs). On the one hand, the shortage of high-grade ores leads to the necessity of processing low-grade ores, which contain a low percentage of valuable metals in comparison to the discarded LIBs that contain a high percentage of these metals, which enhances the processing of the discarded LIBs. On the other hand, the processing of discarded LIBs reduces the negative environmental effects that result from their storage and the harmful elements contained in their composition. Hence, the current study aims at developing cost-effective and ecofriendly technology for cobalt and lithium metal ion recovery based on discarded LIBs. A novel synthesized solid-phase adsorbent (TZAB) was utilized for the selective removal of cobalt from synthetic solutions and spent LIBs. The synthesized TZAB adsorbent was characterized by using 13C-NMR, GC-MS, FT-IR, 1H-NMR, and TGA. The factors affecting the adsorption of cobalt and lithium ions from synthetic solutions and spent LIBs, including the sorbent dose, pH, contact time, temperature, and cobalt concentration were investigated.
@article{6d8b5ddc-f553-4dbc-9c21-b27de165a9e5,
title={Eco-Friendly Recycling of Lithium Batteries for Extraction of High-Purity Metals},
author={Gamal M. A. Mahran and Mohamed A. Gado},
year={2023},
language={en}
}TY - JOUR TI - Eco-Friendly Recycling of Lithium Batteries for Extraction of High-Purity Metals AU - Gamal M. A. Mahran AU - Mohamed A. Gado PY - 2023 LA - en ER -
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