Ubiquity of microplastics in coastal seafloor sediments

Microplastic pollutants occur in marine environments globally, however estimates of seafloor concentrations are rare. Here we apply a novel method to quantify size-graded (0.038–4.0mm diam.) concentrations of plastics in marine sediments from 42 coastal and estuarine sites spanning pollution gradien...

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Veröffentlicht in:Marine pollution bulletin 2017-08, Vol.121 (1-2), p.104-110
Hauptverfasser: Ling, S.D., Sinclair, M., Levi, C.J., Reeves, S.E., Edgar, G.J.
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Sprache:eng
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Zusammenfassung:Microplastic pollutants occur in marine environments globally, however estimates of seafloor concentrations are rare. Here we apply a novel method to quantify size-graded (0.038–4.0mm diam.) concentrations of plastics in marine sediments from 42 coastal and estuarine sites spanning pollution gradients across south-eastern Australia. Acid digestion/density separation revealed 9552 individual microplastics from 2.84l of sediment across all samples; equating to a regional average of 3.4 microplastics·ml−1 sediment. Microplastics occurred as filaments (84% of total) and particle forms (16% of total). Positive correlations between microplastic filaments and wave exposure, and microplastic particles with finer sediments, indicate hydrological/sediment-matrix properties are important for deposition/retention. Contrary to expectations, positive relationships were not evident between microplastics and other pollutants (heavy metals/sewage), nor were negative relationships with neighbouring reef biota detected. Rather, microplastics were ubiquitous across sampling sites. Positive associations with some faunal-elements (i.e. invertebrate species richness) nevertheless suggest high potential for microplastic ingestion. •Micro-plastics occur at high concentrations in coastal seafloor sediments.•Ubiquitous presence across coastal embayment and estuarine environments.•The majority of micro-plastics in seafloor sediments occurred as microfilaments.•Micro-plastic concentrations were largely uncorrelated with other pollutants.•High potential for ingestion but community-level impacts on benthic fauna unclear.
ISSN:0025-326X
1879-3363
DOI:10.1016/j.marpolbul.2017.05.038