Rostami Hossein, Valio Johanna, Tynjälä Pekka, Lassi Ulla, Suominen Pekka
University of Oulu, Research Unit of Sustainable Chemistry, P.O.Box 3000, FI-90014, Oulu, Finland.
Satakunta University of Applied Sciences (SAMK), Satakunnankatu 23, FI-28130, Pori, Finland.
Chemphyschem. 2024 Dec 16;25(24):e202400459. doi: 10.1002/cphc.202400459. Epub 2024 Nov 3.
Significant attention has focused on olivine-structured LiFePO (LFP) as a promising cathode active material (CAM) for lithium-ion batteries. This iron-based compound offers advantages over commonly used Co and Ni due to its lower toxicity abundance, and cost-effectiveness. Despite its current commercial use in energy storage technology, there remains a need for cost-effective production methods to create electrochemically active LiFePO. Consequently, there is ongoing interest in developing innovative approaches for LiFePO production. While LFP batteries exhibit significant thermal stability, cycling performance, and environmental benefits, their growing adoption has increased battery disposal rates. Improper disposal practices for waste LFP batteries result in environmental degradation and the depletion of valuable resources. This review comprehensively examines diverse synthesis approaches for generating LFP powders, encompassing conventional methodologies alongside novel procedures. Furthermore, it conducts an in-depth assessment of the methodologies employed in recycling waste LFP batteries. Moreover, it emphasizes the importance of LFP cathode recycling and investigates pretreatment techniques to enhance understanding. Additionally, it provides valuable insights into the recycling process of used LFP batteries, aiming to raise awareness regarding the market for retired LFP batteries and advocate for the enduring sustainability of lithium-ion batteries.
橄榄石结构的磷酸铁锂(LFP)作为一种有前景的锂离子电池正极活性材料(CAM),已受到广泛关注。这种铁基化合物因其较低的毒性、丰富的储量和成本效益,相比常用的钴和镍具有优势。尽管目前它已在储能技术中得到商业应用,但仍需要具有成本效益的生产方法来制备具有电化学活性的磷酸铁锂。因此,人们一直在关注开发创新的磷酸铁锂生产方法。虽然LFP电池具有显著的热稳定性、循环性能和环境效益,但其越来越广泛的应用也导致了电池报废率的上升。废旧LFP电池的不当处置会导致环境恶化和宝贵资源的消耗。本文综述全面研究了多种制备LFP粉末的合成方法,包括传统方法和新方法。此外,还深入评估了废旧LFP电池回收所采用的方法。此外,强调了LFP正极回收的重要性,并研究了预处理技术以增进理解。此外,还对废旧LFP电池的回收过程提供了有价值的见解,旨在提高对退役LFP电池市场的认识,并倡导锂离子电池的持久可持续性。