Witt Katarzyna, Bożejewicz Daria, Kaczorowska Małgorzata A
Faculty of Chemical Technology and Engineering, UTP University of Science and Technology, 3 Seminaryjna, PL 85326 Bydgoszcz, Poland.
Membranes (Basel). 2020 Apr 2;10(4):60. doi: 10.3390/membranes10040060.
In this paper, three main methods of metal ion separation, i.e., liquid-liquid extraction, transport across polymer inclusion membranes (PIMs), and sorption/desorption, are described. In all of them, ,'-bis(salicylidene)ethylenediamine (salen) was used as an active compound, i.e., as an extractant or as a carrier for the recovery of Ni(II), Cu(II), or Zn(II) ions from aqueous solutions. In each case, the recovery was performed on a model solution, which contained only a single metal ion. The obtained results were compared with the author's previous results for the separation of metal ions using β-diketones, since both β-diketones and salen form the so-called Werner-type complexes. Electrospray ionization high-resolution mass spectrometry (ESI-HRMS) was also applied to confirm the ability of the carrier to form complexes with metal ions in a solution. Moreover, spectrophotometry was used to determine the stability constant of the obtained complexes.
本文描述了金属离子分离的三种主要方法,即液-液萃取、通过聚合物包容膜(PIMs)传输以及吸附/解吸。在所有这些方法中,均使用了N,N'-双(水杨醛)乙二胺(salen)作为活性化合物,即作为萃取剂或载体,用于从水溶液中回收Ni(II)、Cu(II)或Zn(II)离子。在每种情况下,回收操作均在仅含有单一金属离子的模型溶液上进行。将所得结果与作者先前使用β-二酮分离金属离子的结果进行了比较,因为β-二酮和salen均可形成所谓的维尔纳型配合物。还应用电喷雾电离高分辨率质谱(ESI-HRMS)来确认载体在溶液中与金属离子形成配合物的能力。此外,使用分光光度法测定所得配合物的稳定常数。