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Sources of PCDD/Fs, non-ortho PCBs and PAHs in sediments of high and low impacted transboundary rivers (Belgium-France)
Authors:Sanctorum Hermes  Elskens Marc  Leermakers Martine  Gao Yue  Charriau Adeline  Billon Gabriel  Goscinny Séverine  De Cooman Ward  Baeyens Willy
Affiliation:a Analytical and Environmental Chemistry, Vrije Universiteit Brussel (VUB), Pleinlaan 2, 1050 Brussels, Belgium
b Université Lille 1 Sciences et Technologies, Laboratoire Géosystèmes (FRE-CNRS 3298), Equipe Chimie Analytique et Marine, 59655 Villeneuve d’Ascq, France
c Department of Pharmaco-bromatology, Scientific Institute of Public Health, J. Wytsmanstraat 14, 1050 Brussels, Belgium
d Flemish Environment Agency (VMM), Alfons Van De Maelestraat 96, 9320 Erembodegem, Belgium
Abstract:PAHs, PCDD/Fs and non-ortho PCBs have been assessed in Yser and Upper-Scheldt river sediments. Higher contamination levels were observed in the Upper-Scheldt sediments: maximum concentrations for the 16 US-EPA PAHs, PCDD/Fs and non-ortho PCBs respectively amount to 8.9 mg kg−1, 12 ng TEQ kg−1 and 5.1 ng TEQ kg−1. Diagnostic PAH ratios in sediments and atmospheric samples suggest that the PAH compounds are from pyrolytic origin, more specifically combustion processes. The huge consumption of coal in cokes-ovens and smelters and its use for house-heating in Northern France, although decreasing during the last decades, are in support of that suggestion. PCDD/F fingerprints in sediments and deposition material indicate that OCDD is the dominant congener. In addition use of pentachlorophenol (PCP) in the past led to a minor contribution of PCDD/Fs in our sediment samples. Non-ortho PCBs form a substantial fraction of the total TEQ concentrations observed in the sediments. Since the 1980s and 1990s a substantial reduction of the PCDD/F sediment concentrations is observed, but this is not the case for the PAHs.
Keywords:PAHs   PCDD/F   Non-ortho PCB   Sediments   Upper-Scheldt river   Yser river
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