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Solutions were then filtered using filter papers and filtrate was analyzed for residual Cr VI) ion using an atomic adsorption spectrophotometer (Varian, spectra-110-220/880) equipped with a Zeeman atomizer.
The TiO2 cross-over during permeation was detected by using an atomic adsorption spectrometer, which proved that TiO2 rejection was more than 99% for oxidized MWCNT nanocomposite membranes.
Heavy metal concentrations were measured using an atomic adsorption spectrometer (PerkinElmer 3030, Waltham, MA, USA).
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The concentrations of Cu2+ in the solutions before and after adsorption were determined using an atomic absorption spectrophotometer (Buck Scientific model 200 VGP).
Heavy metal detection was performed using an atomic absorption spectrometer.
All Cu analyses were performed using an atomic absorption spectrophotometer.
They were tested using an Atomic Absorption Spectrometer.
Zn was analyzed by flow injection-flame-atomic absorption spectrometry using an atomic absorption spectrometer (model 3300) equipped with a flow injection analysis system for atomic spectroscopy (FIAS-400) and an autosampler (AS-90; PerkinElmer Hispania, S.A., Madrid, Spain).
Following treatment, aliquots were obtained to analyse residual Cd content in the tissues using an atomic absorption spectrophotometer (Atomic Absorption Spectrometer, TAS-986).
The concentrations of copper in samples were then tested using an atomic absorption spectrometer Hitachi-Z50000, Tokyo, Japan).
The free platinum concentration was measured using an atomic absorption spectrometer (Sumitomo Material Bioscience Corp ,Tokyo, Japan).
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