4.6 Article

Increasing polybrominated diphenyl ether (PBDE) contamination in sediment cores from the inner Clyde Estuary, UK

Journal

ENVIRONMENTAL GEOCHEMISTRY AND HEALTH
Volume 32, Issue 1, Pages 13-21

Publisher

SPRINGER
DOI: 10.1007/s10653-009-9261-6

Keywords

River Clyde; Sediment; Flame retardant; Estuarine contamination; Persistent organic pollutant (POPs)

Funding

  1. NERC [bgs05002] Funding Source: UKRI
  2. Natural Environment Research Council [bgs05002] Funding Source: researchfish

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The concentrations of 16 polybrominated diphenyl ether (PBDE) congeners in six short sediment cores from the Clyde Estuary were determined by gas-chromatography mass-spectrometry. Total PBDE concentrations ranged from 1 to 2,645 mu g/kg and the average concentration was 287 mu g/kg. BDE-209 was the main congener and varied from 1 to 2,337 mu g/kg. Elevated total PBDE concentrations were observed close to the sediment surface in the uppermost 10 cm of four of the six sediment cores. Comparison of the down core PBDE profiles revealed that the increase was driven by the accumulation of deca-BDE. Although the deca-BDE mix was dominant, the presence of lower molecular weight congeners BDE-47, BDE-99, BDE-183 and BDE-153 at most sediment intervals suggested additional sources of penta-BDE and octa-BDE pollution. Changing PBDE source input was the major factor in influencing the proportion of nona-brominated congeners, although other explanations such as post burial photo-debromination of BDE-209 cannot be entirely discounted. A clear cascading to lower hepta-, hexa-, and penta-homologues was not found. The increase in total PBDE concentrations and particularly the deca-BDE may possibly be ascribed to the use and subsequent disposal of electrical appliances such as televisions and computers. In the Clyde sediments, the proportion of nona-brominated congeners was higher than that reported for commercial mixtures. This might be due to changing sources of PBDEs or post burial photo-debromination of BDE-209.

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