dc.contributor.author | Xiaodong, S. | uk |
dc.contributor.author | Ishchenko, V. | uk |
dc.date.accessioned | 2024-04-30T14:05:02Z | |
dc.date.available | 2024-04-30T14:05:02Z | |
dc.date.issued | 2024 | |
dc.identifier.citation | Xiaodong S., Ishchenko V. Processing of waste lithium-ion battery cathode // Матеріали LІII науково-технічної конференції підрозділів ВНТУ, Вінниця, 20-22 березня 2024 р. Електрон. текст. дані. 2024. URI: https://conferences.vntu.edu.ua/index.php/all-fbtegp/all-fbtegp-2024/paper/view/20892. | uk |
dc.identifier.uri | https://ir.lib.vntu.edu.ua//handle/123456789/42307 | |
dc.description.abstract | This study introduces the current status of recycling technology for waste lithium-ion batteries, with a focus on analyzing the environmental impact pathways during the recycling process of waste lithium-ion battery cathode materials. Corresponding pollution prevention and control methods are proposed to provide reference for preventing environmental pollution during the recycling process of waste lithium-ion battery cathode materials. | en |
dc.language.iso | en | en |
dc.publisher | ВНТУ | uk |
dc.relation.ispartof | Матеріали LІII науково-технічної конференції підрозділів ВНТУ, Вінниця, 20-22 березня 2024 р. | uk |
dc.relation.uri | https://conferences.vntu.edu.ua/index.php/all-fbtegp/all-fbtegp-2024/paper/view/20892 | |
dc.subject | waste battery | en |
dc.subject | positive electrode material | en |
dc.subject | lithium-ion battery | en |
dc.title | Processing of waste lithium-ion battery cathode | en |
dc.type | Thesis | |
dc.identifier.udc | 628.4.08 | |
dc.relation.references | Wang H.M, Wang G.Q., Qi J.C. et al. Scarcity-weighted fossil fuel footprint of China at the provincial level. Applied Energy,
2020, 258:114081. | en |
dc.relation.references | Li Y., Zhang J.W., Chen Q.G. et al. Emerging of Heterostructure Materials in Energy Storage: A Review. Advanced Materials,
2021, 33(27): 2100855. | en |
dc.relation.references | Zhang N., Deng T., Zhang S.Q. et al. Critical Review on Low-Temperature Li-Ion/Metal Batteries. Advanced Materials, 2022,
34(15): 2107899. | en |
dc.relation.references | Schmuch R., Wagner R., Horpel G. et al. Performance and cost of materials for lithium-based rechargeable automotive
batteries. Nature Energy, 2018, 3(4): 267-78. | en |
dc.relation.references | Zhu G.L., Wen K.C., Lv W.Q. et al. Materials insights into low-temperature performances of lithium-ion batteries. Journal of
Power Sources, 2015, 300: 29-40. | en |
dc.relation.references | Zeng S.H. Analysis of the recycling of power batteries of new energy vehicles based on the perspective of circular economy.
Comprehensive Utilization of Chinese Resources, 2022, 40(12): 94-6. | en |
dc.relation.references | Ai K. Prospective power battery recycling market. Automobiles and Accessories, 2023, (2): 54-7. | en |
dc.relation.references | Yuan S., Lu L., Zhang N. et al. Recovery and high-value utilization of cobalt in cathode materials of waste lithium-ion
batteries. Chinese Science and Technology Paper, 2020, 15(12): 1359-63. | en |