Ula Rozman (Author), Barbara Klun (Author), Aleksandra D. Kuljanin (Author), Tina Skalar (Author), Gabriela Kalčíková (Author)

Abstract

The shape-dependent effects of microplastics have been studied in the context of ingestion but have not been considered in other environmental processes. Therefore, we investigated how the shape of polyethylene microplastics (spheres, fragments, and films) affects interactions with plants, aging, and their adsorption properties. The shape had no effect on the growth rate and chlorophyll content of duckweed Lemna minor, but the fragments strongly adhered to the plant biomass and reduced the root length. The adsorption process of the model organic compound (methylene blue dye) was described by the same kinetic model for all shapes—the experimental data best fit the pseudo-second order model. However, twice as much methylene blue was adsorbed on films as on fragments and spheres. During environmental aging, most biofilm developed on films. The biofilm on spheres contained significantly less photosynthetic microorganisms, but twice as much extracellular polymeric substances (EPS) as on fragments and films. This suggests that the attachment of microorganisms to spherical particles is limited and therefore more intensive production of EPS is required for stable biofilm formation. From the results of this study, it is evident that the shape of microplastics significantly affects not only ecotoxicity but also other environmentally relevant processes.

Keywords

mikroplastika;polietilen;strupenost;mala vodna leča;adhezija;adsorpcija;staranje;microplastics;polyethylene;toxicity;duckweed;adhesion;adsorption;aging;

Data

Language: English
Year of publishing:
Typology: 1.01 - Original Scientific Article
Organization: UL FKKT - Faculty of Chemistry and Chemical Technology
UDC: 504.5:678.742.2
COBISS: 177409283 Link will open in a new window
ISSN: 2045-2322
Views: 37
Downloads: 0
Average score: 0 (0 votes)
Metadata: JSON JSON-RDF JSON-LD TURTLE N-TRIPLES XML RDFA MICRODATA DC-XML DC-RDF RDF

Other data

Secondary language: Slovenian
Secondary keywords: mikroplastika;polietilen;strupenost;mala vodna leča;adhezija;adsorpcija;staranje;
Pages: str. 1-10
Issue: ǂVol. ǂ13, [article no.] 22147
Chronology: 2023
DOI: 10.1038/s41598-023-49175-1
ID: 21708527
Recommended works:
, ǂa ǂpromising approach to remove microplastics from the aquatic environment
, ǂthe ǂmost comprehensive review on microplastic laboratory research