论文标题
直接重复使用铝和铜电流收集器
Direct Reuse of Aluminium and Copper Current Collectors from Spent Lithium-ion Batteries
论文作者
论文摘要
数量不断增加的锂离子电池(LIBS)提出了严重的废物管理挑战。铝和铜电流收集器是LIBS中的重要组成部分,并且重量百分比超过15%。当前收集器的直接再利用可以有效地减少自由浪费,并提供铝和铜的替代可再生能源。此外,它还可以防止长期制造过程以及相关的能源输入和材料消耗。但是,文献中目前收藏家的直接再利用缺乏工作。在此,铝和铜电流收集器是从具有不同化学处理的商业用品中回收的,并分别成功地用于lini0.6Mn0.2CO0.2O2阴极和石墨阳极。用不同过程处理的回收当前收集器对原始的表面组成和形态显示出不同的表面组成和形态,从而产生了独特的润湿性,粘附性和电导率。重复使用的当前收集器在低C率下显示出与原始的电化学性能相似的电化学性能,而由于相对较低的接触电导率,应以高C速率对铝电流收集器采取额外谨慎。这项工作提供了充分的证据表明,铝和铜电流收集器的直接再利用是可能的,并突出了当前收集器的表面形态的重要性。
The ever-increasing number of spent lithium-ion batteries (LIBs) has presented a serious waste-management challenge. Aluminium and copper current collectors are important components in LIBs and take up a weight percentage of more than 15%. Direct reuse of current collectors can effectively reduce LIB waste and provide an alternative renewable source of aluminium and copper. Besides, it also prevents long manufacturing processes and associated energy input and material consumption. However, there is a lack of work on the direct reuse of current collectors in the literature. Herein, aluminium and copper current collectors are reclaimed from commercial spent LIBs with different chemical treatments and successfully reused for LiNi0.6Mn0.2Co0.2O2 cathodes and graphite anodes, respectively. The reclaimed current collectors treated with different processes show different surface compositions and morphology to pristine ones, resulting in distinctive wettability, adhesion and electrical conductivity. The reused current collectors show similar electrochemical performance to the pristine one at low C rates, while extra caution should be taken at high C rates for aluminium current collectors due to relatively low contact conductivity. This work provides substantial evidence that the direct reuse of aluminium and copper current collectors is possible and highlights the importance of the surface morphology of current collectors.