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Selective Adsorption of Rare Earth Elements over Functionalized Cr-MIL-101

机译:通过功能化CR-MIL-101选择性吸附稀土元素

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Efficient rare earth elements (REEs) separation and recovery are crucial to meet the ever-increasing demand for REEs extensively used in various high technology devices. Herein, we synthesized a highly stable chromium-based metal organic framework (MOF) structure, Cr-MIL-101, and its derivatives with different organic functional groups (MIL-101-NH2, MIL-101-ED (ED: ethylenediamine), MIL-101-DETA (DETA: diethylenetriamine), and MIL-101-PMIDA (PMIDA: N-(phosphonomethyl)iminodiacetic acid)) and explored their effectiveness in the separation and recovery of La3+, Ce3+, Nd3+, Sm3+, and Gd3+ in aqueous solutions. The prepared materials were characterized using various analytical instrumentation. These MOFs showed increasing REE adsorption capacities in the sequence MIL-101 MIL-101-NH2 MIL-101-ED MIL-101-DETA MIL-101-PMIDA. MIL-101-PMIDA showed superior REE adsorption capacities compared to other MOFs, with Gd3+ being the element most efficiently adsorbed by the material. The adsorption of Gd3+ onto MIL-101-PMIDA was examined in detail as a function of the solution pH, initial REE concentration, and contact time. The obtained adsorption equilibrium data were well represented by the Langmuir model, and the kinetics were treated with a pseudo-second-order model. A plausible mechanism for the adsorption of Gd3+ on MIL-101-PMIDA was proposed by considering the surface complexation and electrostatic interaction between the functional groups and Gc(3+) ions under different pH conditions. Finally, recycling tests were carried out and demonstrated the higher structural stability of MIL-101-PMIDA during the five adsorption-regeneration runs.
机译:高效的稀土元素(REES)分离和恢复至关重要,以满足广泛用于各种高科技设备的REES的不断增长的需求。在此,我们合成高度稳定的铬基金属有机骨架(MOF)结构,Cr-MIL-101及其具有不同有机官能团的衍生物(MIL-101-NH2,MIL-101-ED(Ed:乙二胺), MIL-101-DETA(DETA:二亚乙基三胺)和MIL-101-PMIDA(PMIDA:N-(膦酰基甲基)亚单乙酸)),并探讨了LA3 +,CE3 +,ND3 +,SM3 +和GD3 +的分离和回收的效果水溶液。使用各种分析仪器表征制备的材料。这些MOF表示序列MIL-101序列中的REE吸附容量增加。 MIL-101-NH2& MIL-101-ED& MIL-101-DETA& MIL-101-PMIDA。与其他MOF相比,MIL-101-PMIDA显示出高度的REE吸附能力,GD3 +是最有效地吸附材料的元素。将Gd3 +的吸附作为溶液pH,初始REE浓度和接触时间的函数进行详细研究。所获得的吸附平衡数据由Langmuir模型很好地表示,用伪二阶模型处理动力学。通过考虑在不同pH条件下的官能团和GC(3 +)离子之间的表面络合和静电相互作用,提出了一种对MIL-101-PMIDA的吸附的合理机制。最后,进行了回收试验并证明了在五种吸附再生过程中MIL-101-PMIDA的较高结构稳定性。

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