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- 김선우;
- Kim Jeongdong;
- Kim Junghwan
WEB OF SCIENCE
0초록
Recent studies on spent lithium-ion battery (LIB) recycling have focused on experimentally testing the direct resynthesis of NCM (NixCoyMnzO2) precursors from spent LIBs at a laboratory scale. However, the excessive use of chemicals, wastewater disposal, and operation optimization present issues in scaling to industrial applications. To resolve these challenges, this study proposes a novel closed-loop NCM precursor resynthesis assisted by roasting and wastewater electrolysis. The proposed system consists of three main processes: hydrogen roasting for lithium recovery, NCM precursor crystallization, and wastewater electrolysis for chemical regeneration. First, spent NCM cathodes were decomposed into metal oxides by hydrogen roasting, and water-soluble lithium oxide was separated from the metal oxide mixture. Second, the remaining metal oxide mixture was subjected to acid leaching, followed by NCM precursor crystallization. Finally, the wastewater generated from precursor crystallization was then treated using anion-exchange membrane-based electrolysis to regenerate the chemicals. The regenerated chemicals were reused in each process unit to create a closed- loop system. Furthermore, closed-loop operation optimization was conducted, leading to increased productivity and efficient time utilization. Under optimal operating conditions, the proposed system achieved a precursor recovery of 81.34%, which is 1.61% higher than that of the conventional system. Furthermore, economic analysis showed that the levelized cost of battery recycling of the proposed system was 30.53% lower than that of the conventional system. These results demonstrate that the proposed system could be a viable solution for sustainable closed-loop battery recycling by effectively reducing chemical consumption and wastewater disposal, while also improving productivity.
- 제목
- Design and operation optimization of a novel closed-loop NCM precursor resynthesis from spent LIB assisted by roasting and wastewater electrolysis
- 저자
- 김선우; Kim Jeongdong; Kim Junghwan
- 발행일
- 2025-01
- 권
- 504