Wei Yuezhou, Salih Khalid A M, Hamza Mohammed F, Fujita Toyohisa, Rodríguez-Castellón Enrique, Guibal Eric
Guangxi Key Laboratory of Processing for Non-ferrous Metals and Featured Materials, School of Resources, Environment and Materials, Guangxi University, Nanning 530004, China.
Guangdong Institute of Rare Metals, Guangdong Academy of Science, Guangzhou 510651, China.
Polymers (Basel). 2021 May 8;13(9):1513. doi: 10.3390/polym13091513.
High-tech applications require increasing amounts of rare earth elements (REE). Their recovery from low-grade minerals and their recycling from secondary sources (as waste materials) are of critical importance. There is increasing attention paid to the development of new sorbents for REE recovery from dilute solutions. A new generation of composite sorbents based on brown algal biomass (alginate) and polyethylenimine (PEI) was recently developed (APEI hydrogel beads). The phosphorylation of the beads strongly improves the affinity of the sorbents for REEs (such as La and Tb): by 4.5 to 6.9 times compared with raw beads. The synthesis procedure (epicholorhydrin-activation, phosphorylation and de-esterification) is investigated by XPS and FTIR for characterizing the grafting route but also for interpreting the binding mechanism (contribution of N-bearing from PEI, O-bearing from alginate and P-bearing groups). Metal ions can be readily eluted using an acidic calcium chloride solution, which regenerates the sorbent: the FTIR spectra are hardly changed after five successive cycles of sorption and desorption. The materials are also characterized by elemental, textural and thermogravimetric analyses. The phosphorylation of APEI beads by this new method opens promising perspectives for the recovery of these strategic metals from mild acid solutions (i.e., pH ~ 4).
高科技应用对稀土元素(REE)的需求量日益增加。从低品位矿石中回收稀土元素以及从二次资源(如废料)中回收利用稀土元素至关重要。人们越来越关注开发用于从稀溶液中回收稀土元素的新型吸附剂。最近开发了一种基于褐藻生物质(藻酸盐)和聚乙烯亚胺(PEI)的新一代复合吸附剂(APEI水凝胶珠)。对珠子进行磷酸化处理极大地提高了吸附剂对稀土元素(如镧和铽)的亲和力:与未处理的珠子相比提高了4.5至6.9倍。通过X射线光电子能谱(XPS)和傅里叶变换红外光谱(FTIR)研究了合成过程(环氧氯丙烷活化、磷酸化和脱酯化),以表征接枝途径并解释结合机制(PEI中含氮基团、藻酸盐中含氧基团和含磷基团的贡献)。使用酸性氯化钙溶液可轻松洗脱金属离子,从而使吸附剂再生:在连续五个吸附和解吸循环后,FTIR光谱几乎没有变化。还通过元素分析、结构分析和热重分析对材料进行了表征。通过这种新方法对APEI珠子进行磷酸化处理,为从弱酸溶液(即pH约为4)中回收这些战略金属开辟了广阔前景。