Laboratory of Green Chemistry, Lappeenranta University of Technology, Mikkeli FI-50130, Finland.
Laboratory of Green Chemistry, Lappeenranta University of Technology, Mikkeli FI-50130, Finland.
J Hazard Mater. 2018 Apr 15;348:84-91. doi: 10.1016/j.jhazmat.2018.01.030. Epub 2018 Jan 20.
Silica-chitosan hybrid beads were synthesized via three different methods to investigate the selective recovery of REE from AMD. The influence of amino/non-amino silanes, high molecular weight/high viscous chitosan and N-/O- based ligands were studied and their effects on REE removal efficiencies were analyzed. The adsorption efficiencies of three various groups of modified beads were inspected with respect to feed pH, in a single and a multi-component system, and their affinities towards the light and heavy rare earth elements (LREE/ HREEs) were interpreted to understand the intra-series REE separation behavior. The focus of the study was mainly directed towards utilizing these fabricated beads for the recovery of valuable REEs from the real AMD obtained at three different sampling depths which was found rich in iron, sulfur and aluminum. Moreover, the selectivity of the beads towards REEs improved with silanized and ligand immobilized gels and their impacts on REE recovery in the presence of competing ions were successfully presented in this paper. Also, the synthesized beads showed rapid REE adsorption and recovery within a process time of 5 min. Group II adsorbents, synthesized by forming silica-chitosan hybrid beads followed by PAN/acac modifications, showed superiority over the other groups of adsorbents.
采用三种不同方法合成了硅壳聚糖杂化珠,以研究从 AMD 中选择性回收稀土元素。研究了氨基/非氨基硅烷、高分子量/高粘性壳聚糖和 N-/O-配体的影响及其对稀土元素去除效率的影响。考察了三组不同修饰珠的吸附效率,研究了进料 pH 值对其的影响,包括单一组分和多组分体系,解释了它们对轻、重稀土元素(LREE/HREEs)的亲和力,以了解同系列稀土元素的分离行为。本研究的重点主要是利用这些制备的珠子从在三个不同采样深度获得的富含铁、硫和铝的实际 AMD 中回收有价值的稀土元素。此外,本文还成功地介绍了珠子对 REE 选择性的提高及其在竞争离子存在下对 REE 回收的影响。同时,所合成的珠子在 5 分钟的处理时间内表现出快速的 REE 吸附和回收。通过形成硅壳聚糖杂化珠,然后进行 PAN/acac 修饰合成的 II 组吸附剂,表现出优于其他组吸附剂的优越性。