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Multiscale recycling rare earth elements from real waste trichromatic phosphors containing glass

机译:从包含玻璃的真实废三基色荧光粉中多尺度回收稀土元素

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In this study, desilication, decomposition, and acidolysis were used to recycle rare earth elements (REEs) from real waste trichromatic phosphors containing glass at laboratory and pilot plant scales. The effects of pre-sintering temperature, sieving, alkaline leaching conditions and alkaline fusion temperature on removal of glass and recovery of REEs were investigated. About 88% of glass fragments in the original matrix were removed after dry sieving through a 0.05 mm mesh sieve and leaching by 5 mol/L NaOH solution at 90 degrees C for 4 hat the appropriate 5:1 liquid-solid ratio. The blue and green phosphors were decomposed by alkaline fusion at 600 degrees C for 2 h. Y, Eu, Ce and Tb-rich solutions were respectively obtained by the two-steps acidolysis. The total leaching rate of REEs reached 94%, while the rates of Y, Eu, Ce, and Tb were 96%, 99%, 81%, and 92%, respectively. Furthermore, in the ton level industrial pilot, the successful application of this approach increased the recovery of the REEs up to 90% compared with the existing technology. Except for the fixed capital investments and taxes, this approach showed positive economic feasibility, since the savings are 1115 (sic)/ton. Therefore, recycling of REEs from waste phosphors is one of the cleaner and economical ways to balance the demand and supply of REEs outside of China. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,脱硅,分解和酸解被用于回收实验室和中试规模的含有玻璃的真实废三基色磷光体中的稀土元素(REE)。研究了预烧结温度,筛分,碱浸条件和碱熔温度对玻璃去除及稀土元素回收率的影响。在通过0.05 mm筛孔筛干筛网并在90摄氏度下用5 mol / L NaOH溶液浸出4合适的液固比5帽后,去除了原始基质中约88%的玻璃碎片。蓝色和绿色荧光粉在600摄氏度下通过碱熔分解2 h。通过两步酸解分别获得富含Y,Eu,Ce和Tb的溶液。稀土元素的总浸出率达到94%,Y,Eu,Ce和Tb的浸出率分别为96%,99%,81%和92%。此外,在吨级工业试验中,与现有技术相比,此方法的成功应用将REE的回收率提高了90%。除了固定资本投资和税收外,这种方法显示出积极的经济可行性,因为节省的成本为每吨1115(原文如此)。因此,从废磷中回收稀土元素是平衡中国以外稀土元素供求的更清洁,经济的方法之一。 (C)2019 Elsevier Ltd.保留所有权利。

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