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February 11, 2026Microplastics2 citationsOpen Access

A Temporal Investigation of Microplastics’ Distribution and Sediment Characteristics in Saltmarshes of the Adriatic Coast of Croatia

SGStamatia GalataPTPero TutmanSMSlavica Matijević

Key Points

  • This research aims to understand the accumulation and retention mechanisms of microplastics in Mediterranean saltmarshes.
  • Analyzed sediment cores dated using AMS radiocarbon and radionuclide techniques.
  • Extracted and analyzed microplastics across core depths.
  • Assessed microplastics in relation to various geochemical parameters like organic matter and sediment texture.
  • Conducted polymer analysis to identify sources of microplastics.
  • Used principal component analysis to correlate sediment characteristics with microplastic presence.
  • Microplastics were first detected in sediments from 1950 in Jadrtovac and post-1960 in Blace.
  • Jadrtovac showed higher concentrations (up to 0.5 MPs g−1), primarily fibers (86%), linked to urban sources.
  • Blace had lower concentrations, dominated by fragments (60%) from agricultural and packaging sources.
  • Microplastics positively correlated with organic matter, carbon content, phosphorus, total nitrogen, and sand.
  • PCA confirmed microplastics were associated with organic-rich, sandy sediments.

Abstract

Saltmarshes have emerged as important sinks for microplastic (MP) pollution, yet little is known about the long-term accumulation and retention mechanisms of MPs in these environments. This study presents the first chronological record of MPs in Mediterranean saltmarsh sediments, using sediment cores dated via a combination of AMS radiocarbon (14C) and radionuclide (210Pb, 137Cs, 241Am) from two saltmarshes located on the Adriatic Sea coast of Croatia (Blace and Jadrtovac). MPs were extracted and analysed across core depths and assessed in relation to geochemical parameters (organic matter (OM), carbonates, organic carbon (C-org), total nitrogen (TN), phosphorus (P) forms’ content, and grain size distribution). Results show that MPs first appear in sediments dated to 1950 in Jadrtovac and post-1960 in Blace, with concentrations increasing markedly in more recent surface layers. Jadrtovac exhibited higher MP concentrations (up to 0.5 MPs g−1), dominated by fibres (86%) associated with urban and maritime sources, while Blace showed lower concentrations, dominated by fragments (60%), likely from localised sources such as agriculture or single-use packaging. Polymer analysis confirmed contrasting source profiles, with rayon and cellophane dominating in Jadrtovac, and polypropylene and olefin in Blace. MPs positively correlated with OM, C-org, P, TN and sand content, and negatively with clay and carbonate content. Principal component analysis (PCA) confirmed that MPs were associated with organic-rich, sandy sediments. These findings demonstrate that OM composition and sediment texture significantly influence MP retention and highlight the role of saltmarshes as long-term archives of plastic pollution in low-energy coastal settings.

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Cite This Study

Galata et al. (2026) studied this question.

synapsesocial.com/papers/698c1cc1267fb587c655f742https://doi.org/10.3390/microplastics5010030
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