Microwave-assisted extraction of decabromodiphenylether from polymers
Contrary to its lower brominated congeners, the flame retardant decabromodiphenylether (DecaBDE) is not banned by the decision 2005/717/EG of the European Union. But the question of the bioavailability and bioaccumulation of this second most used flame retardant worldwide becomes subject of more int...
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Published in | Talanta (Oxford) Vol. 76; no. 1; pp. 102 - 106 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Amsterdam
Elsevier B.V
30.06.2008
Oxford Elsevier |
Subjects | |
Online Access | Get full text |
ISSN | 0039-9140 1873-3573 1873-3573 |
DOI | 10.1016/j.talanta.2008.02.009 |
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Abstract | Contrary to its lower brominated congeners, the flame retardant decabromodiphenylether (DecaBDE) is not banned by the decision 2005/717/EG of the European Union. But the question of the bioavailability and bioaccumulation of this second most used flame retardant worldwide becomes subject of more intense research. In the present study, we developed a microwave-assisted method for the extraction of DecaBDE from polymers. Owing to its main use in electrical and electronic appliances and according to the fire safety standard UL94 V-0, the extraction procedure was carried out for the model compounds polyethylene and polystyrene. Special emphasis has been given to an accurate optimization by an experimental response surface design. Quantification was performed by means of HPLC-DAD. In order to achieve comparable data, extraction was also performed with classic Soxhlet extraction. To compare these results with an independent technique, microwave-induced oxygen combustion and ion chromatography complete this study. |
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AbstractList | Contrary to its lower brominated congeners, the flame retardant decabromodiphenylether (DecaBDE) is not banned by the decision 2005/717/EG of the European Union. But the question of the bioavailability and bioaccumulation of this second most used flame retardant worldwide becomes subject of more intense research. In the present study, we developed a microwave-assisted method for the extraction of DecaBDE from polymers. Owing to its main use in electrical and electronic appliances and according to the fire safety standard UL94 V-0, the extraction procedure was carried out for the model compounds polyethylene and polystyrene. Special emphasis has been given to an accurate optimization by an experimental response surface design. Quantification was performed by means of HPLC-DAD. In order to achieve comparable data, extraction was also performed with classic Soxhlet extraction. To compare these results with an independent technique, microwave-induced oxygen combustion and ion chromatography complete this study. Contrary to its lower brominated congeners, the flame retardant decabromodiphenylether (DecaBDE) is not banned by the decision 2005/717/EG of the European Union. But the question of the bioavailability and bioaccumulation of this second most used flame retardant worldwide becomes subject of more intense research. In the present study, we developed a microwave-assisted method for the extraction of DecaBDE from polymers. Owing to its main use in electrical and electronic appliances and according to the fire safety standard UL94 V-0, the extraction procedure was carried out for the model compounds polyethylene and polystyrene. Special emphasis has been given to an accurate optimization by an experimental response surface design. Quantification was performed by means of HPLC-DAD. In order to achieve comparable data, extraction was also performed with classic Soxhlet extraction. To compare these results with an independent technique, microwave-induced oxygen combustion and ion chromatography complete this study.Contrary to its lower brominated congeners, the flame retardant decabromodiphenylether (DecaBDE) is not banned by the decision 2005/717/EG of the European Union. But the question of the bioavailability and bioaccumulation of this second most used flame retardant worldwide becomes subject of more intense research. In the present study, we developed a microwave-assisted method for the extraction of DecaBDE from polymers. Owing to its main use in electrical and electronic appliances and according to the fire safety standard UL94 V-0, the extraction procedure was carried out for the model compounds polyethylene and polystyrene. Special emphasis has been given to an accurate optimization by an experimental response surface design. Quantification was performed by means of HPLC-DAD. In order to achieve comparable data, extraction was also performed with classic Soxhlet extraction. To compare these results with an independent technique, microwave-induced oxygen combustion and ion chromatography complete this study. |
Author | Ranz, Andreas Trampitsch, Christian Maier, Eveline Lankmayr, Ernst |
Author_xml | – sequence: 1 givenname: Andreas surname: Ranz fullname: Ranz, Andreas organization: Institute of Analytical Chemistry and Radiochemistry, Graz University of Technology, Technikerstrasse 4, 8010 Graz, Austria – sequence: 2 givenname: Eveline surname: Maier fullname: Maier, Eveline organization: Institute of Analytical Chemistry and Radiochemistry, Graz University of Technology, Technikerstrasse 4, 8010 Graz, Austria – sequence: 3 givenname: Christian surname: Trampitsch fullname: Trampitsch, Christian organization: Anton Paar GmbH, Anton-Paar-Strasse 20, 8054 Graz, Austria – sequence: 4 givenname: Ernst surname: Lankmayr fullname: Lankmayr, Ernst email: lankmayr@tugraz.at organization: Institute of Analytical Chemistry and Radiochemistry, Graz University of Technology, Technikerstrasse 4, 8010 Graz, Austria |
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Keywords | Decabromodiphenylether Microwave-assisted extraction Polymers Brominated flame retardants Polyethylene Soxhlet extraction HPLC chromatography Microwave Polymer Combustion Bioavailability Oxygen ion Optimization Ion chromatography Sample preparation Experimental design Model compound Response surface Quantitative analysis |
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Snippet | Contrary to its lower brominated congeners, the flame retardant decabromodiphenylether (DecaBDE) is not banned by the decision 2005/717/EG of the European... |
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SubjectTerms | Analytical chemistry Brominated flame retardants Chemistry Chromatographic methods and physical methods associated with chromatography Decabromodiphenylether Exact sciences and technology Microwave-assisted extraction Other chromatographic methods Polymers |
Title | Microwave-assisted extraction of decabromodiphenylether from polymers |
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