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Simultaneous recovery of rare earth elements from waste permanent magnets (WPMs) leach liquor by solvent extraction and hollow fiber supported liquid membrane

机译:通过溶剂萃取和中空纤维支撑液体膜同时从废永磁体(WPMS)浸出液中稀土元素恢复

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摘要

Recovery of rare earth elements (REEs) i.e. neodymium (Nd), dysprosium (Dy), and praseodymium (Pr) from waste permanent magnet (WPMs) leach liquor has been investigated using solvent extraction followed by hollow fiber supported liquid membrane (HFSLM). In the solvent extraction studies, optimum parameters have been obtained for 1 mol/L D2EHPA at pH 2 and 2 mol/L nitric acid for stripping agent. In the HFSLM system, the best percentage achieved at 90 minutes for neodymium, dysprosium, and praseodymium was 58.62 %, 98.46, and 85.59 %, as well as for the recovery 63.13 %, 15.21 %, and 56.29 %, respectively. In this study, the optimum transport rate was achieved at 90 minutes, the transport of rare earth's ion follows the order was Nd > Pr > Dy. The highest transport and permeability coefficient of rare earths ion was achieved by neodymium with values of 0.0083 min(-1) (R-2 > 0.94) and 9.34 x 10(-8)cm s(-1), respectively. According to the results, HFSLM system is a promising and feasible technique for the recovery of REEs and separation REEs from iron in WPMs leach liquor. HFSLM system was successfully applied in the lab-scale for the recycling of REEs from industrial waste materials.
机译:使用溶剂萃取,研究了从废永久性磁铁(WPMS)浸出液中的钕(Nd),镝(Dy)和镨(Pr)的回收,然后通过中空纤维支撑的液膜(HFSLm)。在溶剂提取研究中,已经在pH 2和2mol / L硝酸的1mol / L D2ehPa中获得最佳参数用于汽提剂。在HFSLM系统中,钕,镝和镨的90分钟达到的最佳百分比为58.62%,98.46和85.59%,以及回收率分别回收率63.13%,15.21%和56.29%。在这项研究中,在90分钟内实现了最佳运输速率,稀土离子的运输遵循顺序是Nd> Pr> Dy。稀土离子的最高运输和渗透系数通过钕通过0.0083min(-1)(R-2> 0.94)和9.34×10(-8)cm S(-1)的值来实现。根据结果​​,HFSLM系统是从WPMS浸出液中从铁中恢复REES和分离REES的有前途和可行的技术。 HFSLM系统已成功应用于实验室规模,以便从工业废物材料中回收REES。

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