Kovalenko Olga V, Baulin Vladimir E, Shulga Yuri M, Baulin Dmitriy V, Gutsev Gennady L, Tsivadze Aslan Yu
A. N. Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Leninsky Prospect 31, Building 4, 119071 Moscow, Russia.
Federal Research Center for Problems of Chemical Physics and Medicinal Chemistry, Russian Academy of Sciences, Ac. Semenov Avenue 1, 142432 Moscow, Russia.
Materials (Basel). 2023 Oct 9;16(19):6614. doi: 10.3390/ma16196614.
Composite resins impregnated by different organophosphorus extractants were developed and used for the extraction chromatography recovery of rare earth elements from nitrate-based leachate of NdFeB permanent magnets. The influence of different factors on recovery of Nd(III) and Fe(III), as the most difficult to separate elements, by developed resins was studied. The influence of extractant structure, the composition of feed solutions, and concentrations of HNO and NHNO on the recovery of Fe(III) and Nd(III) by prepared resins were considered. The best recovery of Nd(III) was shown by resin impregnated with N,N-dioctyl (diphenylphosphoryl) acetamide. For this material, sorption characteristics (values of the distribution coefficient, capacity, and the Nd(III)/Fe(III) separation factor) were obtained, and the reproducibility of the loading-stripping process was evaluated. This resin and its precursors were characterized by IR spectroscopy. It was found that the developed resin is more efficient for Nd(III) recovery than resin impregnated with TODGA. An effective approach to the Nd(III)/Fe(III) separation with developed resin in nitrate solution was proposed. This approach was used for recovery of Pr(III), Nd(III), and Dy(III) from the nitrate-based leachate of NdFeB magnets by the developed resin. The final product contained 99.6% of rare earths.
制备了用不同有机磷萃取剂浸渍的复合树脂,并将其用于从钕铁硼永磁体的硝酸盐浸出液中萃取色谱回收稀土元素。研究了不同因素对所制备树脂回收最难分离的元素钕(III)和铁(III)的影响。考虑了萃取剂结构、进料溶液组成以及硝酸和硝酸铵浓度对所制备树脂回收铁(III)和钕(III)的影响。用N,N-二辛基(二苯基磷酰基)乙酰胺浸渍的树脂对钕(III)的回收效果最佳。对于这种材料,获得了吸附特性(分配系数、容量和钕(III)/铁(III)分离因子的值),并评估了负载-洗脱过程的重现性。用红外光谱对该树脂及其前体进行了表征。发现所制备的树脂比用TODGA浸渍的树脂对钕(III)回收更有效。提出了一种在硝酸盐溶液中用所制备的树脂有效分离钕(III)/铁(III)的方法。该方法用于用所制备的树脂从钕铁硼磁体的硝酸盐浸出液中回收镨(III)、钕(III)和镝(III)。最终产品中稀土含量为99.6%。