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Downward migrating microplastics in lake sediments are a tricky indicator for the onset of the Anthropocene.
Dimante-Deimantovica, Inta; Saarni, Saija; Barone, Marta; Buhhalko, Natalja; Stivrins, Normunds; Suhareva, Natalija; Tylmann, Wojciech; Vianello, Alvise; Vollertsen, Jes.
Affiliation
  • Dimante-Deimantovica I; Latvian Institute of Aquatic Ecology, Riga LV-1007, Latvia.
  • Saarni S; University of Turku, Department of Geography and Geology, Turku 20014, Finland.
  • Barone M; Latvian Institute of Aquatic Ecology, Riga LV-1007, Latvia.
  • Buhhalko N; Daugavpils University, The Faculty of Natural Sciences and Mathematics, Daugavpils LV-5401, Latvia.
  • Stivrins N; Tallinn University of Technology, Department of Marine Systems, Tallinn 12618, Estonia.
  • Suhareva N; University of Latvia, Department of Geography, Riga LV-1004, Latvia.
  • Tylmann W; Tallinn University of Technology, Department of Geology, Tallinn 19086, Estonia.
  • Vianello A; Latvian Institute of Aquatic Ecology, Riga LV-1007, Latvia.
  • Vollertsen J; University of Gdansk, Faculty of Oceanography and Geography, Gdansk PL-80309, Poland.
Sci Adv ; 10(8): eadi8136, 2024 Feb 23.
Article in En | MEDLINE | ID: mdl-38381821
ABSTRACT
Plastics are a recent particulate material in Earth's history. Because of plastics persistence and wide-range presence, it has a great potential of being a global age marker and correlation tool between sedimentary profiles. In this research, we query whether microplastics can be considered among the array of proxies to delimit the Anthropocene Epoch (starting from the year 1950 and above). We present a study of microplastics deposition history inferred from sediment profiles of lakes in northeastern Europe. The sediments were dated with independent proxies from the present back to the first half of the 18th century. Regardless of the sediment layer age, microplastic particles were found throughout the cores in all sites. Depending on particles' aspect ratio, less elongated particles were found deeper, while more elongated particles and fibers have reduced mobility. We conclude that interpretation of microplastics distribution in the studied sediment profiles is ambiguous and does not strictly indicate the beginning of the Anthropocene Epoch.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Sci Adv Year: 2024 Document type: Article Affiliation country: Latvia

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Sci Adv Year: 2024 Document type: Article Affiliation country: Latvia
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