School of Nuclear Science and Technology, University of South China, Hengyang 421001, China.
Nuclear Materials Authority, P.O. Box 530, El-Maadi, Cairo 4710030, Egypt.
Molecules. 2022 Nov 4;27(21):7562. doi: 10.3390/molecules27217562.
The recovery of strategic metals such as rare earth elements (REEs) requires the development of new sorbents with high sorption capacities and selectivity. The bi-functionality of sorbents showed a remarkable capacity for the enhancement of binding properties. This work compares the sorption properties of magnetic chitosan (MC, prepared by dispersion of hydrothermally precipitated magnetite microparticles (synthesized through Fe(II)/Fe(III) precursors) into chitosan solution and crosslinking with glutaraldehyde) with those of the urea derivative (MC-UR) and its sulfonated derivative (MC-UR/S) for cerium (as an example of REEs). The sorbents were characterized by FTIR, TGA, elemental analysis, SEM-EDX, TEM, VSM, and titration. In a second step, the effect of pH (optimum at pH 5), the uptake kinetics (fitted by the pseudo-first-order rate equation), the sorption isotherms (modeled by the Langmuir equation) are investigated. The successive modifications of magnetic chitosan increases the maximum sorption capacity from 0.28 to 0.845 and 1.25 mmol Ce g (MC, MC-UR, and MC-UR/S, respectively). The bi-functionalization strongly increases the selectivity of the sorbent for Ce(III) through multi-component equimolar solutions (especially at pH 4). The functionalization notably increases the stability at recycling (for at least 5 cycles), using 0.2 M HCl for the complete desorption of cerium from the loaded sorbent. The bi-functionalized sorbent was successfully tested for the recovery of cerium from pre-treated acidic leachates, recovered from low-grade cerium-bearing Egyptian ore.
稀土元素(REEs)等战略金属的回收需要开发具有高吸附容量和选择性的新型吸附剂。吸附剂的双功能化表现出增强结合性能的显著能力。这项工作比较了磁壳聚糖(MC,通过将水热沉淀的磁铁矿微粒子(通过 Fe(II)/Fe(III) 前体合成)分散到壳聚糖溶液中并与戊二醛交联制备)与脲衍生物(MC-UR)及其磺化衍生物(MC-UR/S)对铈(作为 REEs 的一个例子)的吸附性能。通过 FTIR、TGA、元素分析、SEM-EDX、TEM、VSM 和滴定对吸附剂进行了表征。在第二步中,研究了 pH(最佳 pH 5)、吸附动力学(通过拟一级速率方程拟合)、吸附等温线(通过 Langmuir 方程模拟)的影响。磁壳聚糖的连续修饰将最大吸附容量从 0.28 增加到 0.845 和 1.25 mmol Ce g(MC、MC-UR 和 MC-UR/S,分别)。双功能化通过等摩尔多组分溶液强烈增加了吸附剂对 Ce(III)的选择性(特别是在 pH 4 时)。功能化显著提高了在循环使用时的稳定性(至少 5 次循环),使用 0.2 M HCl 可将负载的吸附剂上的铈完全解吸。成功地使用双功能化的吸附剂从低品位含铈埃及矿石预处理的酸性浸出液中回收铈。