Jankovský Ondřej, Sedmidubský David, Šimek Petr, Klímová Kateřina, Bouša Daniel, Boothroyd Chris, Macková Anna, Sofer Zdeněk
Department of Inorganic Chemistry, University of Chemistry and Technology Prague, Technicka 5, 166 28 Prague 6, Czech Republic.
Phys Chem Chem Phys. 2015 Oct 14;17(38):25272-7. doi: 10.1039/c5cp04384k.
The separation of rare metals from the ores and commercially available compounds is an important issue due to the need of their high purity in advanced materials and devices. Important examples of two highly important elements that co-exist in the ores are scandium and thorium. Scandium containing ores and consequently also commercially available scandium compounds often contain traces of thorium which is very difficult to separate. We used graphene oxide for the selective sorption of thorium ions from scandium and thorium mixtures originating from the mined ores as well as from commercially available scandium salts. Our results showed that graphene oxide has an extreme affinity towards thorium ions. After the sorption process the graphene oxide contained over 20 wt% of thorium while the amount of scandium sorbed on GO was very low. This phenomenon of high sorption selectivity of graphene oxide can be applied in industry for the purification of various chemicals containing scandium and for separation of thorium containing mixtures. Alternatively, this methodology can be used for preconcentration of thorium from low-grade ores and its further use in the new generation of nuclear reactors.
由于先进材料和器件对稀有金属高纯度的需求,从矿石和市售化合物中分离稀有金属是一个重要问题。矿石中共存的两种极其重要的元素的重要例子是钪和钍。含钪矿石以及市售钪化合物通常含有痕量钍,很难将其分离。我们使用氧化石墨烯从源自开采矿石以及市售钪盐的钪和钍混合物中选择性吸附钍离子。我们的结果表明,氧化石墨烯对钍离子具有极强的亲和力。吸附过程后,氧化石墨烯含有超过20 wt%的钍,而吸附在氧化石墨烯上的钪量非常低。氧化石墨烯这种高吸附选择性现象可应用于工业中,用于纯化含钪的各种化学品以及分离含钍混合物。或者,这种方法可用于从低品位矿石中预富集钍,并将其进一步用于新一代核反应堆。