Battistel Alberto, Palagonia Maria Sofia, Brogioli Doriano, La Mantia Fabio, Trócoli Rafael
Department of Molecular Sciences and Nanosystems, University Cà Foscari Venice, Via Torino, 155B, Mestre, Venezia, 30172, Italy.
Institute of Technical Medicine, Furtwangen University, Jakob-Kienzle-Straße 17, Villingen-Schwenningen, 78054, Germany.
Adv Mater. 2020 Jun;32(23):e1905440. doi: 10.1002/adma.201905440. Epub 2020 Apr 19.
Due to the ubiquitous presence of lithium-ion batteries in portable applications, and their implementation in the transportation and large-scale energy sectors, the future cost and availability of lithium is currently under debate. Lithium demand is expected to grow in the near future, up to 900 ktons per year in 2025. Lithium utilization would depend on a strong increase in production. However, the currently most extended lithium extraction method, the lime-soda evaporation process, requires a period of time in the range of 1-2 years and depends on weather conditions. The actual global production of lithium by this technology will soon be far exceeded by market demand. Alternative production methods have recently attracted great attention. Among them, electrochemical lithium recovery, based on electrochemical ion-pumping technology, offers higher capacity production, it does not require the use of chemicals for the regeneration of the materials, reduces the consumption of water and the production of chemical wastes, and allows the production rate to be controlled, attending to the market demand. Here, this technology is analyzed with a special focus on the methodology, materials employed, and reactor designs. The state-of-the-art is reevaluated from a critical perspective and the viability of the different proposed methodologies analyzed.
由于锂离子电池在便携式应用中无处不在,并且在交通运输和大规模能源领域也有应用,锂的未来成本和可获得性目前正处于讨论之中。预计锂需求在不久的将来会增长,到2025年将达到每年900千吨。锂的利用将取决于产量的大幅增加。然而,目前应用最广泛的锂提取方法——石灰-苏打蒸发法,需要1至2年的时间,并且取决于天气条件。通过这种技术实际的全球锂产量很快将远远无法满足市场需求。替代生产方法最近引起了极大关注。其中,基于电化学离子泵技术的电化学锂回收,具有更高的产量,不需要使用化学物质来再生材料,减少了水的消耗和化学废物的产生,并且能够根据市场需求控制生产率。在此,对该技术进行分析,特别关注其方法、所用材料和反应器设计。从批判性的角度重新评估了当前的技术水平,并分析了不同提议方法的可行性。