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A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples
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Zeitschriftentitel: | Acta hydrochimica et hydrobiologica |
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Personen und Körperschaften: | , , , |
In: | Acta hydrochimica et hydrobiologica, 31, 2003, 1, S. 19-24 |
Format: | E-Article |
Sprache: | Englisch |
veröffentlicht: |
Wiley
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Schlagwörter: |
author_facet |
Borsdorf, Helko Fiedler, Petra Wilke, Dorit Weiß, Holger Borsdorf, Helko Fiedler, Petra Wilke, Dorit Weiß, Holger |
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author |
Borsdorf, Helko Fiedler, Petra Wilke, Dorit Weiß, Holger |
spellingShingle |
Borsdorf, Helko Fiedler, Petra Wilke, Dorit Weiß, Holger Acta hydrochimica et hydrobiologica A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples General Environmental Science Water Science and Technology Aquatic Science Environmental Chemistry |
author_sort |
borsdorf, helko |
spelling |
Borsdorf, Helko Fiedler, Petra Wilke, Dorit Weiß, Holger 0323-4320 1521-401X Wiley General Environmental Science Water Science and Technology Aquatic Science Environmental Chemistry http://dx.doi.org/10.1002/aheh.200390011 <jats:title>Abstract</jats:title><jats:p>A method was developed for the determination of organic halogens in water samples with the aim of minimizing matrix effects and simplifying the sample preparation technique commonly used. The method is based on the adsorption of organic halogens in modified hydrophilic divinylbenzene polymer columns and their elution with methanol. The adsorbent used enables rapid adsorption and desorption due to comparatively high operating flow rates and minimized solvent amounts. Furthermore, no additional reconcentration steps are needed. The methanol extract obtained is combusted with a standard EOX (extractable organic halogen) analyzer and the concentration of organically bound halogens is determined by microcoulometric analysis. The matrix effects are considerably reduced compared to the standard procedure (EN 1485) commonly used. A detection limit of 13 μg/L was established.</jats:p> A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples Acta hydrochimica et hydrobiologica |
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10.1002/aheh.200390011 |
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Acta hydrochimica et hydrobiologica |
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title |
A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_unstemmed |
A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_full |
A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_fullStr |
A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_full_unstemmed |
A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_short |
A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_sort |
a simplified analytical procedure for the determination of organically bound halogens in salt‐containing water samples |
topic |
General Environmental Science Water Science and Technology Aquatic Science Environmental Chemistry |
url |
http://dx.doi.org/10.1002/aheh.200390011 |
publishDate |
2003 |
physical |
19-24 |
description |
<jats:title>Abstract</jats:title><jats:p>A method was developed for the determination of organic halogens in water samples with the aim of minimizing matrix effects and simplifying the sample preparation technique commonly used. The method is based on the adsorption of organic halogens in modified hydrophilic divinylbenzene polymer columns and their elution with methanol. The adsorbent used enables rapid adsorption and desorption due to comparatively high operating flow rates and minimized solvent amounts. Furthermore, no additional reconcentration steps are needed. The methanol extract obtained is combusted with a standard EOX (extractable organic halogen) analyzer and the concentration of organically bound halogens is determined by microcoulometric analysis. The matrix effects are considerably reduced compared to the standard procedure (EN 1485) commonly used. A detection limit of 13 μg/L was established.</jats:p> |
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author | Borsdorf, Helko, Fiedler, Petra, Wilke, Dorit, Weiß, Holger |
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description | <jats:title>Abstract</jats:title><jats:p>A method was developed for the determination of organic halogens in water samples with the aim of minimizing matrix effects and simplifying the sample preparation technique commonly used. The method is based on the adsorption of organic halogens in modified hydrophilic divinylbenzene polymer columns and their elution with methanol. The adsorbent used enables rapid adsorption and desorption due to comparatively high operating flow rates and minimized solvent amounts. Furthermore, no additional reconcentration steps are needed. The methanol extract obtained is combusted with a standard EOX (extractable organic halogen) analyzer and the concentration of organically bound halogens is determined by microcoulometric analysis. The matrix effects are considerably reduced compared to the standard procedure (EN 1485) commonly used. A detection limit of 13 μg/L was established.</jats:p> |
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spelling | Borsdorf, Helko Fiedler, Petra Wilke, Dorit Weiß, Holger 0323-4320 1521-401X Wiley General Environmental Science Water Science and Technology Aquatic Science Environmental Chemistry http://dx.doi.org/10.1002/aheh.200390011 <jats:title>Abstract</jats:title><jats:p>A method was developed for the determination of organic halogens in water samples with the aim of minimizing matrix effects and simplifying the sample preparation technique commonly used. The method is based on the adsorption of organic halogens in modified hydrophilic divinylbenzene polymer columns and their elution with methanol. The adsorbent used enables rapid adsorption and desorption due to comparatively high operating flow rates and minimized solvent amounts. Furthermore, no additional reconcentration steps are needed. The methanol extract obtained is combusted with a standard EOX (extractable organic halogen) analyzer and the concentration of organically bound halogens is determined by microcoulometric analysis. The matrix effects are considerably reduced compared to the standard procedure (EN 1485) commonly used. A detection limit of 13 μg/L was established.</jats:p> A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples Acta hydrochimica et hydrobiologica |
spellingShingle | Borsdorf, Helko, Fiedler, Petra, Wilke, Dorit, Weiß, Holger, Acta hydrochimica et hydrobiologica, A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples, General Environmental Science, Water Science and Technology, Aquatic Science, Environmental Chemistry |
title | A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_full | A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_fullStr | A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_full_unstemmed | A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_short | A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
title_sort | a simplified analytical procedure for the determination of organically bound halogens in salt‐containing water samples |
title_unstemmed | A Simplified Analytical Procedure for the Determination of Organically Bound Halogens in Salt‐containing Water Samples |
topic | General Environmental Science, Water Science and Technology, Aquatic Science, Environmental Chemistry |
url | http://dx.doi.org/10.1002/aheh.200390011 |