| Literature DB >> 27185054 |
Bhavya Srivastava1, Milan K Barman1, Mousumi Chatterjee1, Dipika Roy1, Bhabatosh Mandal2.
Abstract
The present work reports the systematic studies on extraction, separation and preconcentration of Th(IV), U(VI), Zr(IV), Ce(IV) and Cr(III) amid several other foreign ions using EBT anchored {SiO2}n3-D microarray. The effect of various sorption parameters, such as pH, concentration, temperature, sample volume, flow-rate and co-existing foreign ions were investigated. Quantitative sorption was ensured at solution pH: 6.0-6.5 for Th(IV), Ce(IV), Cr(III) and pH: 2.75-3.0 for Zr(IV), U(VI) couple. Analysis on extracted species and extraction sites reveals that [Th4(μ(2)-OH)8(H2O)4](8+), [Ce6(μ(2)-OH)12(H2O)5](12+), [Cr3(μ(2)-OH)4(H2O)](5+), [(UO2)3(μ(2)-OH)5(H2O)3](+) and [Zr4(μ(2)-OH)8(H2O)0.5](8+) for the respective metal ions gets extracted at HOMO of the extractor. HOMO-{metal ion species} was found to be 1:1 complexation. Sorption was endothermic, entropy-gaining, instantaneous and spontaneous in nature. A density functional theory (DFT) calculation has been performed to analyze the 3-D structure and electronic distribution of the synthesized extractor.Entities:
Keywords: Break-through capacity is a function of frontier orbitals; EBT anchored {SiO(2)}(n) 3-D microarray; HOMO-{metal ion species} 1:1 complexation; Sequential separation of Th(IV), Ce(IV), Cr(III), Zr(IV), U(VI); Solid phase extraction
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Year: 2016 PMID: 27185054 DOI: 10.1016/j.chroma.2016.04.079
Source DB: PubMed Journal: J Chromatogr A ISSN: 0021-9673 Impact factor: 4.759