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Emerging technologies for the recovery of rare earth elements (REEs) from the end-of-life electronic wastes: a review on progress, challenges, and perspectives

机译:从寿命结束电子废物中恢复稀土元素(REES)的新兴技术:关于进展,挑战和观点的审查

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The demand for rare earth elements (REEs) has significantly increased due to their indispensable uses in integrated circuits of modern technology. However, due to the extensive use of high-tech applications in our daily life and the depletion of their primary ores, REE's recovery from secondary sources is today needed. REEs have now attracted attention to policymakers and scientists to develop novel recovery technologies for materials' supply sustainability. This paper summarizes the recent progress for the recovery of REEs using various emerging technologies such as bioleaching, biosorption, cryo-milling, electrochemical processes and nanomaterials, siderophores, hydrometallurgy, pyrometallurgy, and supercritical CO2. The challenges facing this recovery are discussed comprehensively and some possible improvements are presented. This work also highlights the economic and engineering aspects of the recovery of REE from waste electrical and electronic equipment (WEEE). Finally, this review suggests that greener and low chemical consuming technologies, such as siderophores and electrochemical processes, are promising for the recovery of REEs present in small quantities. These technologies present also a potential for large-scale application.
机译:由于现代技术的集成电路不可或缺的用途,对稀土元素(REES)的需求显着增加。然而,由于我们日常生活中的高科技应用以及他们的主要矿石的消耗广泛使用,因此需要从次要来源的恢复。 Rees现在已经引起了决策者和科学家的关注,为材料供应可持续性发展新的恢复技术。本文总结了利用各种新兴技术,如生物浸渍,生物吸附,冷冻铣削,电化学方法和纳米材料,施工小丘,氢化冶金,Pyromety冶金和超临界CO2的近期回收REES的最近进展。全面讨论这种复苏面临的挑战,并提出了一些可能的改进。这项工作还突出了废物电气和电子设备(WEEE)恢复REE的经济和工程方面。最后,本综述表明,更环保和低化学品消费技术,如施工电池和电化学过程,是对少量存在的REES的回收。这些技术还存在大规模应用的潜力。

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