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Metal Recovery from Spent Samarium–Cobalt MagnetsUsing a Trichloride Ionic Liquid

机译:从废Sa钴磁铁中回收金属使用三氯化物离子液体

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摘要

Recycling of samarium–cobalt (SmCo) magnets is essential due to the limited resources of the mentioned metals and their high economic importance. The ionic liquid (IL) trihexyltetradecylphosphonium trichloride, [P666,14][Cl3], which can safely store chlorine gas in the form of the trichloride anion, was used as an oxidizing solvent for the recovery of metals from spent SmCo magnets. The dissolution was studied considering various mixtures of the ILs [P666,14][Cl3] and [P666,14]Cl, solid-to-liquid ratios and different temperatures. The results showed that the maximum capacity of [P666,14][Cl3] for SmCo magnets was 71 ± 1 mg/g of [P666,14][Cl3], in the presence of an extra source of coordinating chloride ions. The maximum loading of the IL could be reached within 3 h at 50 °C. Four stripping steps effectively removed all metals from the loaded IL, where sodium chloride solution (3 mol L–1), twice water and ammonia solution (3 mol L–1) were used consecutively as the stripping solvents. The regenerated IL showed a similar dissolution performance as fresh IL. Oxidative dissolution of metals in trichloride ILs is easily transferable to the recycling of valuable metals from other end-of-life products suchas neodymium–iron–boron magnets and nickel metal hydridebatteries.
机译:the钴(SmCo)磁体的回收至关重要,因为上述金属的资源有限且其经济重要性很高。可以安全储存三氯化物阴离子形式的氯气的离子液体(IL)三己基四癸基三氯化phosph [P666,14] [Cl3],用作氧化溶剂,用于从用过的SmCo磁体中回收金属。考虑到ILs [P666,14] [Cl3]和[P666,14] Cl的各种混合物,固液比和不同温度,对溶出度进行了研究。结果表明,在存在额外的配位氯离子源的情况下,SmCo磁体的[P666,14] [Cl3]的最大容量为71±1 mg / g [P666,14] [Cl3]。 IL的最大负载可以在50°C下3小时内达到。四个汽提步骤可有效去除负载的离子液体中的所有金属,其中包括氯化钠溶液(3 mol L -1 ),两倍的水和氨溶液(3 mol L -1 )被连续用作汽提溶剂。再生的IL表现出与新鲜IL相似的溶解性能。金属在三氯化物离子液体中的氧化溶解很容易转移到其他报废产品中回收有价值的金属作为钕铁硼磁铁和镍金属氢化物电池。

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