Department of Inorganic Chemistry-Functional Materials, Faculty of Chemistry, University of Vienna , Währinger Straße 42, 1090 Vienna, Austria.
ACS Appl Mater Interfaces. 2018 Jan 10;10(1):448-457. doi: 10.1021/acsami.7b13336. Epub 2017 Dec 28.
Separation and preconcentration of scandium (Sc) were successfully achieved using a mesoporous silica support that showed good selectivity for this element. Unmodified mesoporous silica materials were used as an extracting medium in a solid-liquid extraction (SLE) process. Selectivity, extraction capacity, kinetics of extraction, and reusability under acidic conditions were investigated. The results demonstrate the potential of unmodified mesoporous silica materials for the selective separation and preconcentration of Sc. As no chelating ligand was grafted on the silica surface, which is often the case for most solid-phase extraction media for metal-ion separation, the experimental data allow us to hypothesize that the accessible silanols on the material surface are responsible for the selective Sc extraction. This interesting feature would drastically decrease the cost of solid-liquid extraction systems by using unmodified mesoporous silica materials. Moreover, a leachate solution obtained from a real rare-earth element ore was used to determine the performances of the proposed materials in a packed column configuration. The maximum Sc adsorption on the silica material surfaces is moderate (1 mg/g), but it is balanced by a great concentration factor (more than 100 times). The extraction performances are potentially promising, both in terms of selectivity and preconcentration, under the acidic conditions tested.
使用介孔硅作为支撑物成功地实现了钪(Sc)的分离和预浓缩,该支撑物对该元素表现出良好的选择性。未改性的介孔硅材料被用作固液萃取(SLE)过程中的萃取介质。研究了其在酸性条件下的选择性、萃取容量、萃取动力学和可重复使用性。结果表明,未改性的介孔硅材料具有选择性分离和预浓缩 Sc 的潜力。由于没有在硅表面接枝螯合配体,这在大多数用于金属离子分离的固相萃取介质中是常见的,因此实验数据使我们假设材料表面上可及的硅醇基是负责选择性 Sc 萃取的原因。通过使用未改性的介孔硅材料,这一有趣的特性将大大降低固液萃取系统的成本。此外,使用从真正的稀土矿石中获得的浸出液溶液来确定所提出的材料在填充柱配置中的性能。在测试的酸性条件下,硅材料表面对 Sc 的最大吸附量适中(1mg/g),但通过大浓度因子(超过 100 倍)来平衡。在选择性和预浓缩方面,萃取性能具有很大的应用潜力。