School of Mines, China University of Mining and Technology, Xuzhou, 221116, China.
School of Chemical Engineering & Technology, China University of Mining and Technology, Xuzhou, 221116, China.
Environ Res. 2023 Dec 1;238(Pt 1):117145. doi: 10.1016/j.envres.2023.117145. Epub 2023 Sep 15.
Bioleaching of lithium-ion batteries is a microbially catalyzed process. Under the action of redox, acid leaching and complexation in the presence of microorganisms, the valuable metals in the cathode material enter the liquid phase as ions and are subsequently recovered from the succeeding process. This technique has the advantages of being inexpensive, environmentally friendly and having simple needs. However, it is still in development and has not yet commercialized. In this paper, the technology is fully discussed based on numerous excellent studies. The contents include commonly utilized microorganisms, bioleaching mechanism, microbial stress response and metabolic activation, enhancement strategies, leaching characteristics and interfacial phenomena, process evaluation, and a critical discussion of recent research breakthroughs. They give readers with comprehensive and in-depth understanding on the bioleaching of lithium-ion batteries and help to improve the technology's industrialization. Researchers can make new explorations from the potential research directions and methods presented in this work to make biotechnology better serve resource recovery and social development.
锂离子电池生物浸出是一种微生物催化的过程。在微生物存在的条件下,通过氧化还原、酸浸和络合作用,阴极材料中的有价金属以离子形式进入液相,并随后从后续的工艺中回收。该技术具有成本低、环保、需求简单等优点。然而,它仍处于发展阶段,尚未实现商业化。本文在众多优秀研究的基础上,全面讨论了该技术。内容包括常用的微生物、生物浸出机理、微生物胁迫响应和代谢激活、强化策略、浸出特性和界面现象、工艺评价以及对近期研究突破的批判性讨论。它们为读者提供了对锂离子电池生物浸出的全面而深入的了解,有助于提高该技术的工业化水平。研究人员可以从本工作提出的潜在研究方向和方法中进行新的探索,使生物技术更好地为资源回收和社会发展服务。