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A pre-concentration procedure using coprecipitation for determination of lead and iron in several samples using flame atomic absorption spectrometry
Authors:Saracoglu S  Soylak M  Peker D S Kacar  Elci L  dos Santos W N L  Lemos V A  Ferreira S L C
Institution:a Erciyes University, Faculty of Education, 38039 Kayseri, Turkey
b Erciyes University, Faculty of Science and Arts, Chemistry Department, 38039 Kayseri, Turkey
c Pamukkale University, Faculty of Science and Arts, Chemistry Department, 20020 Denizli, Turkey
d Universidade Estadual de Santa Cruz lheus, Bahia, Brazil
e Universidade Estadual do Sudoeste da Bahia, Núcleo de Química Analítica da Bahia (NQA), Laboratório de Química Analítica (LQA), Campus de Jequié, 45200-000 Jequié, BA, Brazil
f Instituto de Química, Universidade Federal da Bahia, Campus Universitário de Ondina, 40.170-280 Salvador, BA, Brazil
Abstract:The present paper proposes a pre-concentration procedure for determination of lead and iron in several samples by flame atomic absorption spectrometry. In it, lead(II) and iron(III) ions are coprecipitated using the violuric acid-copper(II) system as collector. Afterwards, the precipitate is dissolved with 1 M HNO3 solution and the metal ions are determined. The optimization step was performed using factorial design involving the variables: pH, violuric acid mass (VA) and copper concentration (Cu).Using the optimized experimental conditions, the proposed procedure allows the determination these metals with detection limits of 0.18 μg L−1 for iron and 0.16 μg L−1 for lead. The effects of foreign ions on the pre-concentration procedure were also evaluated and the results demonstrated that this method could be applied for determination of iron and lead in several real samples. The proposed method was successfully applied to the analysis of seawater, urine, mineral water, soil and physiological solution samples. The concentrations of lead and iron achieved in these samples agree well with others data reported in the literature.
Keywords:Pre-concentration  Coprecipitation  Iron  Lead  Factorial design
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