Determination of Total Iron in Environmental Samples by Solid Phase Extraction with Dimethyl(E)-2-(2-Methoxyphenoxy)-2-Butenedioate

A novel solid phase extraction technique for determination of total iron in environmental water samples was developed. The method is based on sorption of Fe(III) ions on octadecyl silica membrane disk modified with a new synthetic ligand dimethyl(E)‐2‐(2‐methoxyphenoxy)‐2‐butenedioate (I). Iron(III)...

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Veröffentlicht in:Journal of the Chinese Chemical Society (Taipei) 2010-02, Vol.57 (1), p.118-123
Hauptverfasser: Khayatian, Gholamreza, Kolaie, Hamidreza Ahmadzadeh Vosta, Nasiri, Farough, Atashkar, Bahareh, Hassanpoor, Shahed
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container_title Journal of the Chinese Chemical Society (Taipei)
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creator Khayatian, Gholamreza
Kolaie, Hamidreza Ahmadzadeh Vosta
Nasiri, Farough
Atashkar, Bahareh
Hassanpoor, Shahed
description A novel solid phase extraction technique for determination of total iron in environmental water samples was developed. The method is based on sorption of Fe(III) ions on octadecyl silica membrane disk modified with a new synthetic ligand dimethyl(E)‐2‐(2‐methoxyphenoxy)‐2‐butenedioate (I). Iron(III) is quantitatively retained on the disk in the pH range of 3–7 at a flow rate of 1–7 mL min−1. The Fe(III) eluted with 10 mL of 0.01 M EDTA and than was measured by flame atomic absorption spectrometry (FAAS) at 248.3 nm. The maximum capacity disk modified by 7 mg of ligand was found to be 197 ± 2 μg of iron(III). The breakthrough volume was greater than 2000 mL. The iron(III) was completely recovered (> 99%) from water with a preconcentration factor of more than 200. The limit of detection of the proposed method was 1.00 ng mL−1. The various cationic and anionic interferences had no effect on the recovery of iron(III) from the binary mixtures. The proposed method was successfully applied to determination of total iron from three different water samples. A novel solid phase extraction technique for determination of total iron in environmental water samples was developed. The method is based on sorption of Fe (III) ions on octadecyl silica membrane disk modified with a new synthetic ligand dimethyl(E)‐2‐(2‐methoxyphenoxy)‐2‐butenedioat (I). The iron (III) was completely recovered (>99%) from water with a preconcentration factor of more than 200.
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The method is based on sorption of Fe(III) ions on octadecyl silica membrane disk modified with a new synthetic ligand dimethyl(E)‐2‐(2‐methoxyphenoxy)‐2‐butenedioate (I). Iron(III) is quantitatively retained on the disk in the pH range of 3–7 at a flow rate of 1–7 mL min−1. The Fe(III) eluted with 10 mL of 0.01 M EDTA and than was measured by flame atomic absorption spectrometry (FAAS) at 248.3 nm. The maximum capacity disk modified by 7 mg of ligand was found to be 197 ± 2 μg of iron(III). The breakthrough volume was greater than 2000 mL. The iron(III) was completely recovered (&gt; 99%) from water with a preconcentration factor of more than 200. The limit of detection of the proposed method was 1.00 ng mL−1. The various cationic and anionic interferences had no effect on the recovery of iron(III) from the binary mixtures. The proposed method was successfully applied to determination of total iron from three different water samples. A novel solid phase extraction technique for determination of total iron in environmental water samples was developed. The method is based on sorption of Fe (III) ions on octadecyl silica membrane disk modified with a new synthetic ligand dimethyl(E)‐2‐(2‐methoxyphenoxy)‐2‐butenedioat (I). The iron (III) was completely recovered (&gt;99%) from water with a preconcentration factor of more than 200.</description><identifier>ISSN: 0009-4536</identifier><identifier>EISSN: 2192-6549</identifier><identifier>DOI: 10.1002/jccs.201000019</identifier><language>eng</language><publisher>Weinheim: WILEY-VCH Verlag</publisher><subject>Iron(III) preconcentration ; Solid phase extraction ; Total iron determination</subject><ispartof>Journal of the Chinese Chemical Society (Taipei), 2010-02, Vol.57 (1), p.118-123</ispartof><rights>Copyright © 2010 The Chemical Society Located in Taipei &amp; Wiley‐VCH Verlag GmbH &amp; Co. 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The method is based on sorption of Fe(III) ions on octadecyl silica membrane disk modified with a new synthetic ligand dimethyl(E)‐2‐(2‐methoxyphenoxy)‐2‐butenedioate (I). Iron(III) is quantitatively retained on the disk in the pH range of 3–7 at a flow rate of 1–7 mL min−1. The Fe(III) eluted with 10 mL of 0.01 M EDTA and than was measured by flame atomic absorption spectrometry (FAAS) at 248.3 nm. The maximum capacity disk modified by 7 mg of ligand was found to be 197 ± 2 μg of iron(III). The breakthrough volume was greater than 2000 mL. The iron(III) was completely recovered (&gt; 99%) from water with a preconcentration factor of more than 200. The limit of detection of the proposed method was 1.00 ng mL−1. The various cationic and anionic interferences had no effect on the recovery of iron(III) from the binary mixtures. The proposed method was successfully applied to determination of total iron from three different water samples. 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The method is based on sorption of Fe(III) ions on octadecyl silica membrane disk modified with a new synthetic ligand dimethyl(E)‐2‐(2‐methoxyphenoxy)‐2‐butenedioate (I). Iron(III) is quantitatively retained on the disk in the pH range of 3–7 at a flow rate of 1–7 mL min−1. The Fe(III) eluted with 10 mL of 0.01 M EDTA and than was measured by flame atomic absorption spectrometry (FAAS) at 248.3 nm. The maximum capacity disk modified by 7 mg of ligand was found to be 197 ± 2 μg of iron(III). The breakthrough volume was greater than 2000 mL. The iron(III) was completely recovered (&gt; 99%) from water with a preconcentration factor of more than 200. The limit of detection of the proposed method was 1.00 ng mL−1. The various cationic and anionic interferences had no effect on the recovery of iron(III) from the binary mixtures. The proposed method was successfully applied to determination of total iron from three different water samples. A novel solid phase extraction technique for determination of total iron in environmental water samples was developed. The method is based on sorption of Fe (III) ions on octadecyl silica membrane disk modified with a new synthetic ligand dimethyl(E)‐2‐(2‐methoxyphenoxy)‐2‐butenedioat (I). The iron (III) was completely recovered (&gt;99%) from water with a preconcentration factor of more than 200.</abstract><cop>Weinheim</cop><pub>WILEY-VCH Verlag</pub><doi>10.1002/jccs.201000019</doi><tpages>6</tpages></addata></record>
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subjects Iron(III) preconcentration
Solid phase extraction
Total iron determination
title Determination of Total Iron in Environmental Samples by Solid Phase Extraction with Dimethyl(E)-2-(2-Methoxyphenoxy)-2-Butenedioate
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