Ye Quanhui, Jin Xiuyu, Zhu Baotong, Gao Haifeng, Wei Na
Department of Civil and Environmental Engineering, 3221 Newmark Civil Engineering Laboratory, University of Illinois at Urbana-Champaign, 205 N. Mathews Avenue, Urbana, Illinois 61801, United States.
Department of Civil and Environmental Engineering and Earth Sciences, University of Notre Dame, 156 Fitzpatrick Hall, Notre Dame, Indiana 46556, United States.
Environ Sci Technol. 2023 Mar 14;57(10):4276-4285. doi: 10.1021/acs.est.2c08971. Epub 2023 Feb 15.
Recovering rare earth elements (REEs) from waste streams represents a sustainable approach to diversify REE supply while alleviating the environmental burden. However, it remains a critical challenge to selectively separate and concentrate REEs from low-grade waste streams. In this study, we developed a new type of biosorbent by immobilizing Lanmodulin-SpyCatcher (LanM-Spycatcher) on the surface of SpyTag-functionalized magnetic nanoparticles (MNPs) for selective separation and recovery of REEs from waste streams. The biosorbent, referred to as MNP-LanM, had an adsorption activity of 6.01 ± 0.11 μmol-terbium/g-sorbent and fast adsorption kinetics. The adsorbed REEs could be desorbed with >90% efficiency. The MNP-LanM selectively adsorbed REEs in the presence of a broad range of non-REEs. The protein storage stability of the MNP-LanM increased by two-fold compared to free LanM-SpyCatcher. The MNP-LanM could be efficiently separated using a magnet and reused with high stability as it retained ∼95% of the initial activity after eight adsorption-desorption cycles. Furthermore, the MNP-LanM selectively adsorbed and concentrated REEs from the leachate of coal fly ash and geothermal brine, resulting in 967-fold increase of REE purity. This study provides a scientific basis for developing innovative biosorptive materials for selective and efficient separation and recovery of REEs from low-grade feedstocks.
从废物流中回收稀土元素(REEs)是一种可持续的方法,既能使REEs供应多样化,又能减轻环境负担。然而,从低品位废物流中选择性分离和富集REEs仍然是一项严峻挑战。在本研究中,我们通过将兰氏菌素- SpyCatcher(LanM-Spycatcher)固定在SpyTag功能化磁性纳米颗粒(MNPs)表面,开发了一种新型生物吸附剂,用于从废物流中选择性分离和回收REEs。这种生物吸附剂称为MNP-LanM,具有6.01±0.11μmol-铽/克吸附剂的吸附活性和快速吸附动力学。吸附的REEs可以以>90%的效率解吸。MNP-LanM在多种非REEs存在的情况下能选择性吸附REEs。与游离的LanM-SpyCatcher相比,MNP-LanM的蛋白质储存稳定性提高了两倍。MNP-LanM可以用磁铁高效分离,并能高度稳定地重复使用,因为在八个吸附-解吸循环后它仍保留约95%的初始活性。此外,MNP-LanM从粉煤灰浸出液和地热卤水中选择性吸附和富集REEs,使REEs纯度提高了967倍。本研究为开发用于从低品位原料中选择性高效分离和回收REEs的创新生物吸附材料提供了科学依据。