International Journal of Environmental & Analytical Chemistry · 2009 · 62 citations · 22 references
Solvent ExtractionEngineeringChemistryMineral ProcessingEnvironmental ChemistryChemical EngineeringUltra Trace AmountsEnvironmental Analytical ChemistryMetalloid ContaminationPlasma–optical Emission SpectrometryAnalytical ChemistryElemental CharacterizationTrace ElementChromatographySolid Phase ExtractionTrace MetalWater QualityEnvironmental Water SamplesWater AnalysisEnvironmental EngineeringEnvironmental RemediationWater Purification
A highly sensitive and accurate method for pre-concentration and determination of ultra trace amounts of zinc, copper, cobalt and nickel ions in environmental water samples is proposed. The method is based on the solid phase extraction of these ions on C18-bonded silica extraction disks modified with a novel Schiff base 2,2′-[1,6-hexanediyl bis (nitriloethylidine)]bis-1-naphthol (HDN). The retained ions on the prepared solid phase was eluted with 10 mL 0.01 M nitric acid and measured by inductively coupled plasma–optical emission spectrometry. The extraction efficiency and the influence of the type and least amount of eluent for the stripping of ions from the disks, pH, flow rates of sample solution and eluent, amount of HDN, effect of other ions and breakthrough volume were evaluated. The limits of detection of the method were 0.2, 0.2, 0.8 and 0.6 µg L−1 for zinc, copper, cobalt and nickel, respectively and an enrichment factor of 100 was obtained. The proposed method was applied for determination of zinc, copper, cobalt and nickel ions in some natural and synthetic water samples with satisfactory results.
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Comprehensive Coordination Chemistry II
Jon A. McCleverty, Thomas Meyer · 2003 · 2.7K citations
Coordination Complex, Inorganic Chemistry, Inorganic Synthesis +1
Membrane approach to solid-phase extractions
Donald F. Hagen, Craig G. Markell, George A. Schmitt et al. · Analytica Chimica Acta · 1990 · 235 citations
Solvent Extraction, Chemical Engineering, Separation Technology +4