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Preconcentration of Pb(II) by Magnetic Metal-Organic Frameworks and Analysis Using Graphite Furnace Atomic Absorption Spectroscopy
by
Sharifi, Arman
, Hallaj, Rahman
, Bahar, Soleiman
in
Absorption spectroscopy
/ Acids
/ Atomic absorption analysis
/ Drinking water
/ Ethanol
/ Fourier transforms
/ Furnaces
/ Graphite
/ Infrared spectroscopy
/ Iron oxides
/ Lead
/ Magnetic fields
/ Metal-organic frameworks
/ Morphology
/ Nanocomposites
/ Nanoparticles
/ Scanning electron microscopy
/ Selectivity
/ Solid phases
/ Sorbents
/ Spectrum analysis
/ Trimesic acid
2023
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Preconcentration of Pb(II) by Magnetic Metal-Organic Frameworks and Analysis Using Graphite Furnace Atomic Absorption Spectroscopy
by
Sharifi, Arman
, Hallaj, Rahman
, Bahar, Soleiman
in
Absorption spectroscopy
/ Acids
/ Atomic absorption analysis
/ Drinking water
/ Ethanol
/ Fourier transforms
/ Furnaces
/ Graphite
/ Infrared spectroscopy
/ Iron oxides
/ Lead
/ Magnetic fields
/ Metal-organic frameworks
/ Morphology
/ Nanocomposites
/ Nanoparticles
/ Scanning electron microscopy
/ Selectivity
/ Solid phases
/ Sorbents
/ Spectrum analysis
/ Trimesic acid
2023
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Preconcentration of Pb(II) by Magnetic Metal-Organic Frameworks and Analysis Using Graphite Furnace Atomic Absorption Spectroscopy
by
Sharifi, Arman
, Hallaj, Rahman
, Bahar, Soleiman
in
Absorption spectroscopy
/ Acids
/ Atomic absorption analysis
/ Drinking water
/ Ethanol
/ Fourier transforms
/ Furnaces
/ Graphite
/ Infrared spectroscopy
/ Iron oxides
/ Lead
/ Magnetic fields
/ Metal-organic frameworks
/ Morphology
/ Nanocomposites
/ Nanoparticles
/ Scanning electron microscopy
/ Selectivity
/ Solid phases
/ Sorbents
/ Spectrum analysis
/ Trimesic acid
2023
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Preconcentration of Pb(II) by Magnetic Metal-Organic Frameworks and Analysis Using Graphite Furnace Atomic Absorption Spectroscopy
Journal Article
Preconcentration of Pb(II) by Magnetic Metal-Organic Frameworks and Analysis Using Graphite Furnace Atomic Absorption Spectroscopy
2023
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Overview
In this study, a magnetic metal-organic framework (MOF) was synthesized based on magnetic Fe3O4, Cu(II), and benzene-1,3,5-tricarboxylic acid (Cu-BTC) as a sorbent for solid phase extraction (SPE) of trace amounts of Pb(II) in water and lettuce samples. Pb(II) ion was adsorbed on the magnetic MOF and easily separated by a magnet; therefore, no filtration or centrifugation was necessary. The analyte ions were eluted by HCl 0.5 mol·L−1 and analyzed via graphite furnace atomic absorption spectroscopy. The prepared sorbent was characterized by scanning electron microscopy (SEM), energy-dispersive spectroscopy (EDS), and Fourier transform-infrared (FT-IR) spectroscopy. Under optimal experimental conditions, the method had a linear range of 0.1–50 μg·L−1. The limits of detection and quantitation for lead were found to be 0.026 and 0.08 μg·L−1, respectively. The results showed that the prepared sorbent has high selectivity for Pb2+ even in the presence of other interfering metal ions.
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