萃取(化学)
稀土
分离(统计)
土(古典元素)
要素(刑法)
材料科学
化学
有机化学
计算机科学
矿物学
物理
政治学
数学物理
机器学习
法学
作者
Yangyang Gao,Kate Ivanovich,Sean Medin,Brooke Pian,Samantha N. MacMillan,Alexa M. Schmitz,Justin J. Wilson
标识
DOI:10.1038/s42004-025-01565-4
摘要
The rare earth elements are critically important for a wide range of modern technologies. However, obtaining them selectively and efficiently from natural sources and recycled materials is challenging and often requires harsh or wasteful conditions. Here we show that a macrocyclic chelator appended to a solid resin can overcome this challenge by acting as a robust platform for both the extraction and separation of these elements. This resin preferably captures the large rare earth elements in mixtures of these ions, giving rise to higher extraction efficiencies for them over the smaller ions. We further demonstrate that this resin can be used to separate rare earth elements. As a proof-of-principle validation, this resin was demonstrated to selectively extract rare earth elements in the presence of many different types of competing metal ions in a bioleachate solution obtained from autoslag waste, leading to their enrichment.
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