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Cysteine-Functionalized Chitosan Magnetic Nano-Based Particles for the Recovery of Light and Heavy Rare Earth Metals: Uptake Kinetics and Sorption Isotherms

机译:半胱氨酸官能化的壳聚糖磁性纳米基颗粒用于回收轻,重稀土金属:吸收动力学和吸附等温线

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摘要

Cysteine-functionalized chitosan magnetic nano-based particles were synthesized for the sorption of light and heavy rare earth (RE) metal ions (La(III), Nd(III) and Yb(III)). The structural, surface, and magnetic properties of nano-sized sorbent were investigated by elemental analysis, FTIR, XRD, TEM and VSM (vibrating sample magnetometry). Experimental data show that the pseudo second-order rate equation fits the kinetic profiles well, while sorption isotherms are described by the Langmuir model. Thermodynamic constants (ΔG°, ΔH°) demonstrate the spontaneous and endothermic nature of sorption. Yb(III) (heavy RE) was selectively sorbed while light RE metal ions La(III) and Nd(III) were concentrated/enriched in the solution. Cationic species RE(III) in aqueous solution can be adsorbed by the combination of chelating and anion-exchange mechanisms. The sorbent can be efficiently regenerated using acidified thiourea.
机译:合成了半胱氨酸官能化的壳聚糖磁性纳米基颗粒,用于吸附轻和重稀土(RE)金属离子(La(III),Nd(III)和Yb(III))。通过元素分析,FTIR,XRD,TEM和VSM(振动样品磁法)研究了纳米级吸附剂的结构,表面和磁性。实验数据表明,伪二阶速率方程很好地拟合了动力学曲线,而吸附等温线由Langmuir模型描述。热力学常数(ΔG°,ΔH°)表明了吸附的自发性和吸热性。 Yb(III)(重稀土)被选择性地吸附,而轻稀土金属离子La(III)和Nd(III)被浓缩/富集在溶液中。水溶液中的阳离子物质RE(III)可以通过螯合和阴离子交换机制的结合而被吸附。使用酸化的硫脲可以有效地再生吸附剂。

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