Deng Bing, Wang Xin, Luong Duy Xuan, Carter Robert A, Wang Zhe, Tomson Mason B, Tour James M
Department of Chemistry, Rice University, Houston, TX 77005, USA.
Department of Civil and Environmental Engineering, Rice University, Houston, TX 77005, USA.
Sci Adv. 2022 Feb 11;8(6):eabm3132. doi: 10.1126/sciadv.abm3132. Epub 2022 Feb 9.
Rare earth elements (REEs) are critical materials in electronics and clean technologies. With the diminishing of easily accessible minerals for mining, the REE recovery from waste is an alternative toward a circular economy. Present methods for REE recovery suffer from lengthy purifications, low extractability, and high wastewater streams. Here, we report an ultrafast electrothermal process (~3000°C, ~1 s) based on flash Joule heating (FJH) for activating wastes to improve REE extractability. FJH thermally degrades or reduces the hard-to-dissolve REE species to components with high thermodynamic solubility, leading to ~2× increase in leachability and high recovery yields using diluted acid (e.g., 0.1 M HCl). The activation strategy is feasible for various wastes including coal fly ash, bauxite residue, and electronic waste. The rapid FJH process is energy-efficient with a low electrical energy consumption of 600 kWh ton. The potential for this route to be rapidly scaled is outlined.
稀土元素(REEs)是电子和清洁技术中的关键材料。随着易开采矿物的减少,从废物中回收稀土元素是实现循环经济的一种替代方法。目前的稀土元素回收方法存在纯化过程冗长、萃取率低和废水排放量大的问题。在此,我们报告了一种基于闪速焦耳加热(FJH)的超快电热过程(约3000°C,约1秒),用于活化废物以提高稀土元素的萃取率。闪速焦耳加热将难溶解的稀土物种热降解或还原为具有高热力学溶解度的成分,使用稀酸(如0.1 M HCl)时,浸出率提高约2倍,回收率也很高。该活化策略对包括粉煤灰、铝土矿残渣和电子废物在内的各种废物均可行。快速的闪速焦耳加热过程具有能源效率,电能消耗低至600 kWh/吨。文中概述了该方法快速扩大规模的潜力。