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Titlebook: Rare Metal Technology 2024; Kerstin Forsberg,Takanari Ouchi,Athanasios Karamal Conference proceedings 2024 The Minerals, Metals & Material

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楼主: 异国
发表于 2025-3-27 00:26:05 | 显示全部楼层
Rare Earth Magnet Recycling Via Liquid Magnesium Leaching and Distillationred researchers to look for sourcing alternatives, with recycling being one of the approaches. Many research investigations have demonstrated the magnet-to-metal approach, in which rare earth metals such as neodymium, praseodymium, dysprosium, and terbium, are leached from magnets by molten metals.
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Extraction of Less Common Metals (REEs and Sc) from Greek Bauxite Residueomies. Common REE applications are in electronics, renewable energy, the automotive industry, defense and aerospace, medical and health care, glass and ceramics, catalysts, magnets, and metallurgy. Scandium’s main applications are in aluminum alloys, solid oxide fuel cells, and in laser technology.
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Investigation of the Solvometallurgical Leaching Performance of Light Rare Earth Elements in Beylikots playing a key role in especially green technology. With the increasing REE demand, the search for an alternative, and environmentally friendly extraction method is increasing day by day. At this point, it is seen that the concept of solvometallurgy has attracted a considerable attention as an alt
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Leaching of Critical Metals from Spent Lithium-Ion Battery Using Acidic Organophosphorus Extractanttudy thus proposes a sustainable recycling process for cathode material (nickel-cobalt-manganese/NCM chemistry) via leaching with an acidic organophosphorus extractant, di-(2-ethylhexyl)phosphoric acid/D2EHPA and copper (current collector) as the reducing agent. The effects of leaching parameters, i
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Mechanochemical Extraction of Lithium from α-Spodumene at Low Temperaturesm market demand. Currently, in the USA brines are the primary source for lithium due to their utilization of cheap and inexpensive processes; however, long lead times and low extraction yields raise concerns for potential supply chain disruptions. In this work, we examine a novel mechanochemical pro
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Synthetic Alkali Aluminosilicate-Hydroxide Systems as an Analogue to Optimize Lithium Recovery from f α-spodumene in caustic media can be achieved below 450 °C without the conventional pretreatment at temperatures exceeding 1000 °C, typically required to induce a phase transition to the more reactive β-form (Gamage McEvoy et al. in Energy technology 2023, TMS Springer, pp 81–87, 2023). Considering
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