Chen Mengyuan, Zheng Zhangfeng, Wang Qiang, Zhang Yubin, Ma Xiaotu, Shen Chao, Xu Dapeng, Liu Jin, Liu Yangtao, Gionet Paul, O'Connor Ian, Pinnell Leslie, Wang Jun, Gratz Eric, Arsenault Renata, Wang Yan
Department of Mechanical Engineering, Worcester Polytechnic Institute, Worcester, MA, 01609, USA.
A123 Systems, 200 West St, Waltham, MA, 02451, USA.
Sci Rep. 2019 Feb 7;9(1):1654. doi: 10.1038/s41598-018-38238-3.
The lithium-ion battery (LIB) recycling market is becoming increasingly important because of the widespread use of LIBs in every aspect of our lives. Mobile devices and electric cars represent the largest application areas for LIBs. Vigorous innovation in these sectors is spurring continuous deployment of LIB powered devices, and consequently more and more LIBs will become waste as they approach end of life. Considering the significant economic and environmental impacts, recycling is not only necessary, but also urgent. The WPI group has successfully developed a closed-loop recycling process, and has previously demonstrated it on a relatively small scale 1 kg spent batteries per experiment. Here, we show that the closed-loop recycling process can be successfully scaled up to 30 kg of spent LIBs from electric vehicle recycling streams, and the recovered cathode powder shows similar (or better) performance to equivalent commercial powder when evaluated in both coin cells and single layer pouch cells. All of these results demonstrate the closed-loop recycling process has great adaptability and can be further developed into industrial scale.
由于锂离子电池(LIB)在我们生活的各个方面都有广泛应用,锂离子电池回收市场正变得越来越重要。移动设备和电动汽车是锂离子电池最大的应用领域。这些领域的蓬勃创新推动了锂离子电池供电设备的持续部署,因此,越来越多的锂离子电池在接近使用寿命结束时将成为废物。考虑到其重大的经济和环境影响,回收不仅必要,而且紧迫。WPI团队已成功开发出一种闭环回收工艺,此前已在相对较小规模(每次实验1千克废电池)上进行了演示。在此,我们表明,该闭环回收工艺可以成功扩大规模,处理来自电动汽车回收流的30千克废旧锂离子电池,并且在硬币电池和单层软包电池中进行评估时,回收的阴极粉末表现出与同等商业粉末相似(或更好)的性能。所有这些结果表明,该闭环回收工艺具有很强的适应性,可进一步发展到工业规模。