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Carbon Cloth Supported Nano-Mg(OH)2 for the Enrichment and Recovery of Rare Earth Element Eu(III) From Aqueous Solution

机译:碳布负载的纳米Mg(OH)2用于从水溶液中富集和回收稀土元素Eu(III)

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摘要

Nano-Mg(OH)2 is attracting great attention as adsorbent for pre-concentration and recovery of rare earth elements (REEs) from low-concentration solution, due to its superior removal efficiency for REEs and environmental friendliness. However, the nanoparticles also cause some severe problems during application, including aggregation, blockage in fixed-bed column, as well as the difficulties in separation and reuse. Herein, in order to avoid the mentioned problems, a carbon cloth (CC) supported nano-Mg(OH)2 (nano-Mg(OH)2@CC) was synthesized by electrodeposition. The X-ray diffraction and scanning electron microscopy analysis demonstrated that the interlaced nano-sheet of Mg(OH)2 grew firmly and uniformly on the surface of carbon cloth fibers. Batch adsorption experiments of Eu(III) indicated that the nano-Mg(OH)2@CC composite maintained the excellent adsorption performance of nano-Mg(OH)2 toward Eu(III). After adsorption, the Eu containing composite was calcined under nitrogen atmosphere. The content of Eu2O3 in the calcined material was as high as 99.66%. Fixed-bed column experiments indicated that no blockage for Mg(OH)2@CC composite was observed during the treatment, while the complete blockage of occurred to nano-Mg(OH)2 at an effluent volume of 240 mL. Moreover, the removal efficiency of Mg(OH)2@CC was still higher than 90% until 4,200 mL of effluent volume. This work provides a promising method for feasible application of nanoadsorbents in fixed-bed process to recycle low-concentration REEs from wastewater.
机译:纳米镁(OH)2作为吸附剂用于从低浓度溶液中进行预浓缩和稀土元素的回收,由于其对稀土元素的优异去除效率和环境友好性。但是,纳米粒子在使用过程中还会引起一些严重问题,包括聚集,固定床色谱柱堵塞以及分离和重复使用的困难。在此,为了避免上述问题,通过电沉积合成了碳布(CC)负载的纳米Mg(OH)2(纳米-Mg(OH)2 @CC)。 X射线衍射和扫描电子显微镜分析表明,Mg(OH)2交织的纳米片在碳布纤维的表面上牢固而均匀地生长。 Eu(III)的批量吸附实验表明,纳米Mg(OH)2 @ CC复合材料保持了纳米Mg(OH)2对Eu(III)的优异吸附性能。吸附后,将含Eu的复合物在氮气氛下煅烧。煅烧材料中Eu2O3的含量高达99.66%。固定床色谱柱实验表明,在处理过程中未观察到Mg(OH)2 @ CC复合材料的阻塞,而在240 mL的流出量下,Mg(OH)2 @ CC复合材料完全被纳米Mg(OH)2阻塞。而且,直到流出量为4,200 mL为止,Mg(OH)2 @ CC的去除效率仍高于90%。这项工作为将纳米吸附剂切实应用于固定床工艺中以回收废水中的低浓度REE提供了有希望的方法。

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