Knowledge Agora



Similar Articles

Title Towards Sustainable Lithium-Ion Battery Recycling: Advancements in Circular Hydrometallurgy
ID_Doc 25310
Authors Cerrillo-Gonzalez, MD; Villen-Guzman, M; Vereda-Alonso, C; Rodriguez-Maroto, JM; Paz-Garcia, JM
Title Towards Sustainable Lithium-Ion Battery Recycling: Advancements in Circular Hydrometallurgy
Year 2024
Published Processes, 12, 7
Abstract The growing demand for lithium-ion batteries (LIBs) has led to significant environmental and resource challenges, such as the toxicity of LIBs' waste, which pose severe environmental and health risks, and the criticality of some of their components. Efficient recycling processes are essential to mitigate these issues, promoting the recovery of valuable materials and reducing environmental pollution. This review explores the application of electrodialysis in the process of recycling LIBs to contribute to the principles of circular hydrometallurgy. The article is structured to provide a comprehensive understanding of the topic, starting with an overview of the environmental and resource challenges associated with manufacturing LIBs. Then the current recycling processes are presented, focusing on hydrometallurgical methods. The concept of circular hydrometallurgy is introduced, emphasizing sustainable resource recovery. The electrodialysis technique is described in this context, highlighting its integration into the process of recycling LIBs to separate and recover valuable metals. Finally, the article addresses the challenges and limitations of the electrodialysis technique, such as energy consumption and system optimization, and identifies areas for future research and development. Through this analysis, the review aimed to contribute to advancing the development of more sustainable and efficient LIB recycling technologies, ensuring a safer and more environmentally friendly approach to the management of batteries' lifecycle.
PDF

Similar Articles

ID Score Article
12349 Wu, XX; Liu, YH; Wang, JX; Tan, YH; Liang, Z; Zhou, GM Toward Circular Energy: Exploring Direct Regeneration for Lithium-Ion Battery Sustainability(2024)Advanced Materials, 36.0, 32
16765 Roy, JJ; Rarotra, S; Krikstolaityte, V; Zhuoran, KW; Cindy, YDI; Tan, XY; Carboni, M; Meyer, D; Yan, QY; Srinivasan, M Green Recycling Methods to Treat Lithium-Ion Batteries E-Waste: A Circular Approach to Sustainability(2022)Advanced Materials, 34, 25
11073 Cao, Y; Li, JF; Ji, HC; Wei, XJ; Zhou, GM; Cheng, HM A review of direct recycling methods for spent lithium-ion batteries(2024)
9495 Biswal, BK; Zhang, B; Tran, PTM; Zhang, JJ; Balasubramanian, R Recycling of spent lithium-ion batteries for a sustainable future: recent advancements(2024)Chemical Society Reviews, 53.0, 11
6165 Hantanasirisakul, K; Sawangphruk, M Sustainable Reuse and Recycling of Spent Li-Ion batteries from Electric Vehicles: Chemical, Environmental, and Economical Perspectives(2023)Global Challenges, 7, 4
9511 Raj, B; Sahoo, MK; Nikoloski, A; Singh, P; Basu, S; Mohapatra, M Retrieving Spent Cathodes from Lithium-Ion Batteries through Flourishing Technologies(2023)Batteries & Supercaps, 6.0, 1
7234 Popescu, IA; Dorneanu, SA; Truta, RM; Ilea, P RECENT RESEARCH RELATED TO Li-ION BATTERY RECYCLING PROCESSES-A REVIEW(2022)Studia Universitatis Babes-Bolyai Chemia, 67, 1
4416 Mossali, E; Picone, N; Gentilini, L; Rodrìguez, O; Pérez, JM; Colledani, M Lithium-ion batteries towards circular economy: A literature review of opportunities and issues of recycling treatments(2020)
13503 Bhattacharyya, S; Roy, S; Vajtai, R Emerging Processes for Sustainable Li-Ion Battery Cathode Recycling(2024)
30033 Prazanová, A; Plachy, Z; Koci, J; Fridrich, M; Knap, V Direct Recycling Technology for Spent Lithium-Ion Batteries: Limitations of Current Implementation(2024)Batteries-Basel, 10.0, 3
Scroll