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Selective Reduction and Separation of Europium from Mixed Rare-Earth Oxides Recovered from Waste Fluorescent Lamp Phosphors

机译:从废荧光灯荧光粉中回收的混合稀土氧化物中选择性降低和分离铕

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Europium is vital to the production of high technology products. In recent years, the worldwide market for europium has been controlled by primary sources in China. However, recycling europium from waste fluorescents is a strategy to supply europium. Waste phosphor powder is recovered from recycled lamps and retorted, sieved, and leached to produce europium and yttrium rich concentrate. Europium is separated from yttrium by reducing Eu(III) to Eu(II) by selective reduction with zinc and precipitated as europium (II) sulfate from solution via sulfuric acid. After building upon previous work and removing unit operations, the optimized conditions for europium sulfate were determined. The effects of varying the entrance pH, quantity of sulfate, choice of inert gas, selective reduction time, and precipitation time were studied upon the final grade and recovery of europium (II) sulfate. The final purity of 93.84% of europium (II) sulfate with a recovery of 84.2% was obtained after using an entrance pH equal to 2.5, 5 times the stoichiometric ratio of sulfate, a 2 h precipitation time, and 30 min selective reduction time.
机译:铕对高科技产品的生产至关重要。近年来,全球对铕市场已被中国的主要来源控制。然而,从废荧光中回收铕是一种提供铕的策略。废磷光体粉末从再生灯中回收并腐蚀,筛分,浸出,以生产铕和钇富浓缩物。通过用锌选择性还原通过选择性还原并通过硫酸沉淀到Eu(II)并通过硫酸沉淀为铕(II)硫酸盐作为eu(II)分离钇(III)分离。在以前的工作和除去单元操作后,确定了硫酸铕的优化条件。对铕(II)硫酸铕的最终级和恢复,研究了改变入射pH,硫酸盐的浓度,惰性气体,选择性还原时间和沉淀时间的影响。在使用入口pH值等于2.5,硫酸盐的化学计量比,2小时沉淀时间和30分​​钟的选择性还原时间后,获得硫酸93.84%的铕(II)硫酸盐的硫酸盐的硫酸盐的最终纯度得到84.2%的硫酸盐。

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