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Precursors of polychlorinated dibenzo-p-dioxins and dibenzofurans in Arctic and Antarctic marine sediments: Environmental concern in the face of climate change. | LitMetric

AI Article Synopsis

  • Polychlorinated dibenzo-p-dioxins, dibenzofurans (PCDD/F), and their precursors (PCP and TCS) are highly toxic pollutants that can travel long distances, posing significant risks to polar regions.
  • An interdisciplinary study examined the contamination levels of these pollutants in marine sediments collected from various locations in the Arctic and Antarctic between 2013 and 2016, finding that 60% of the samples had levels exceeding safe limits set by European regulations.
  • The study highlights a concerning trend of contamination comparable to that in industrialized regions, especially around melting glaciers, indicating a reemission of persistent organic pollutants into the oceans as global temperatures rise, making it critical for environmental agencies to address

Article Abstract

Polychlorinated dibenzo-p-dioxins, dibenzofurans (PCDD/F) and their precursors - pentachlorophenol (PCP) and triclosan (TCS), constitute a group of persistent, highly toxic multimedia pollutants, being easily transported via atmosphere over long distances, thus particularly threatening to the polar areas. The global fate of PCDD/Fs is temperature-dependent, and their transfer and immobilization at the Poles are described by the grasshopper effect and the cold trap phenomenon. The aim of this interdisciplinary study was to perform a preliminary assessment of the present state of pollution of Arctic and Antarctic marine sediments by PCP and TCS along with determination of PCDD/Fs contamination by immunoassay. Sediments from 20 stations were collected during two polar expeditions (2013-2016). The study area covered Hornsund Fjord and the southwest coast of Wedel-Jarlsberg Land (Arctic) - Skodde Bay, Nottingham Bay, Isbjørnhamna Bay and Admiralty Bay (Antarctica) - Suszczewski Cove, Halfmoon Cove and Herve Cove. The studied contaminants were quantified in 60% of the collected sediments, with almost half exceeding the environmentally safe levels according European regulations and worldwide literature. The determined levels of PCP, TCS and PCDD/F in Arctic and Antarctic sediments were to be comparable to those reported in the southern Baltic Sea located in the intense industrialized mid-latitudes. Maximum concentrations were observed in the vicinity of retreating, marine terminating glaciers. This observation confirms reemission of POPs into the global cycle with respect to the worldwide ocean warming. The results of this study should gain attention of the international and regional environmental agencies as well as the main chlorine production decision makers.

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Source
http://dx.doi.org/10.1016/j.chemosphere.2020.127605DOI Listing

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