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首页> 外文期刊>The Journal of Supercritical Fluids >Supercritical fluid extraction of rare earth elements from luminescent material in waste fluorescent lamps
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Supercritical fluid extraction of rare earth elements from luminescent material in waste fluorescent lamps

机译:从废荧光灯中的发光材料中超临界流体萃取稀土元素

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摘要

Rare earth elements were extracted from luminescent material in waste fluorescent lamps using supercritical carbon dioxide (SF-CO2) containing tri-n-butyl phosphate (TBP) complexes with HNO3 and H2O. The determined Y, Eu, La, Cc and Tb in the employed luminescent material were 29.6, 2.3. 10.6, 5.0 and 2.6 wt.%, respectively. Aqueous droplets were generated in an extraction experiment from a reaction with metal oxides and a complex prepared from vigorous mixing of TBP with concentrated nitric acid (15.5 mol dm(-3) (M)). These droplets were generated because the complex was saturated with water and the excess water separated, leading to low recovery yields. The molecular ratio of TBP:HNO3:H2O in the complex was 1.0:1.8:0.6. When the ratio was changed to 1.0:1.3:0.4 by dilution with TBP anhydrate, the separation of water was prevented. Using this complex, extraction efficiencies for Y and Eu increased to over 99% after the static extraction for 120 min at 15 MPa, 333 K. (C) 2004 Elsevier B.V. All rights reserved.
机译:使用含有磷酸三正丁酯(TBP)与HNO3和H2O的超临界二氧化碳(SF-CO2)从废荧光灯中的发光材料中提取稀土元素。所使用的发光材料中确定的Y,Eu,La,Cc和Tb为29.6、2.3。分别为10.6、5.0和2.6重量%。在萃取实验中,从与金属氧化物的反应中生成了水滴,该复合物由TBP与浓硝酸(15.5 mol dm(-3)(M))剧烈混合制得。这些液滴的产生是因为配合物被水饱和,过量的水被分离出来,导致回收率低。配合物中TBP∶HNO 3 ∶H 2 O的分子比为1.0∶1.8∶0.6。当通过用TBP无水物稀释将比例改变为1.0:1.3:0.4时,防止了水的分离。使用这种配合物,在15 MPa,333 K下静态萃取120分钟后,Y和Eu的萃取效率提高到99%以上。(C)2004 Elsevier B.V.保留所有权利。

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