Siekierka Anna, Bryjak Marek, Razmjou Amir, Kujawski Wojciech, Nikoloski Aleksandar N, Dumée Ludovic F
Department of Process Engineering and Technology of Polymeric and Carbon Materials, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
School of Engineering, Edith Cowan University, 270 Joondalup Drive, Joondalup, Perth, WA 6027, Australia.
Membranes (Basel). 2022 Mar 18;12(3):343. doi: 10.3390/membranes12030343.
The mass production of lithium-ion batteries and lithium-rich e-products that are required for electric vehicles, energy storage devices, and cloud-connected electronics is driving an unprecedented demand for lithium resources. Current lithium production technologies, in which extraction and purification are typically achieved by hydrometallurgical routes, possess strong environmental impact but are also energy-intensive and require extensive operational capabilities. The emergence of selective membrane materials and associated electro-processes offers an avenue to reduce these energy and cost penalties and create more sustainable lithium production approaches. In this review, lithium recovery technologies are discussed considering the origin of the lithium, which can be primary sources such as minerals and brines or e-waste sources generated from recycling of batteries and other e-products. The relevance of electro-membrane processes for selective lithium recovery is discussed as well as the potential and shortfalls of current electro-membrane methods.
电动汽车、储能设备和云连接电子产品所需的锂离子电池和富锂电子产品的大规模生产,正推动着对锂资源前所未有的需求。当前的锂生产技术,通常通过湿法冶金路线进行提取和提纯,对环境影响巨大,而且能源密集,需要广泛的运营能力。选择性膜材料及相关电工艺的出现,为减少这些能源和成本代价以及创造更可持续的锂生产方法提供了一条途径。在本综述中,我们将根据锂的来源来讨论锂回收技术,锂的来源可以是矿物和卤水等原生来源,也可以是电池和其他电子产品回收产生的电子垃圾来源。我们还将讨论电膜工艺在选择性锂回收方面的相关性,以及当前电膜方法的潜力和不足。