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Electrochemical approaches for selective recovery of critical elements in hydrometallurgical processes of complex feedstocks

机译:复合原料氢冶金工艺临界元素选择性恢复的电化学方法

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摘要

Critical minerals are essential for the ever-increasing urban and industrial activities in modern society. The shift to cost-efficient and ecofriendly urban mining can be an avenue to replace the traditional linear flow of virgin-mined materials. Electrochemical separation technologies provide a sustainable approach to metal recovery, through possible integration with renewable energy, the minimization of external chemical input, as well as reducing secondary pollution. In this review, recent advances in electrochemically mediated technologies for metal recovery are discussed, with a focus on rare earth elements and other key critical materials for the modern circular economy. Given the extreme heterogeneity of hydrometallurgically-derived media of complex feedstocks, we focus on the nature of molecular selectivity in various electrochemically assisted recovery techniques. Finally, we provide a perspective on the challenges and opportunities for process intensification in critical materials recycling, especially through combining electrochemical and hydrometallurgical separation steps.
机译:关键矿物对现代社会的不断增加的城市和工业活动至关重要。转向成本效益和经验典型的城市采矿可以是取代传统的处于原子矿物的线性流动的途径。电化学分离技术通过与可再生能源的可能集成,最小化外部化学输入以及减少二次污染,提供了一种可持续的金属回收方法,以及减少二次污染。在本综述中,讨论了电化学介导的金属回收技术的最新进展,重点是稀土元素和现代循环经济的其他关键关键材料。鉴于复合原料的液压冶金介质的极端异质性,我们专注于各种电化学辅助恢复技术中的分子选择性的性质。最后,我们提供了对临界材料回收中的过程强化的挑战和机会,尤其是通过组合电化学和液压冶金分离步骤的挑战和机会。

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