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Occurrence, distribution and provenance of micro plastics: A large scale quantitative analysis of beach sediments from southeastern coast of South Africa

The Science of The Total Environment 2020 59 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
E. Vetrimurugan, M.P. Jonathan E. Vetrimurugan, M.P. Jonathan, M.P. Jonathan M.P. Jonathan, Priyadarsi D. Roy, M.P. Jonathan M.P. Jonathan Priyadarsi D. Roy, Priyadarsi D. Roy, J.S. Sakthi, M.P. Jonathan, M.P. Jonathan, M.P. Jonathan, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, J.S. Sakthi, M.P. Jonathan Priyadarsi D. Roy, Francisco Rodríguez‐González, Francisco Rodríguez‐González, J.S. Sakthi, J.S. Sakthi, J.S. Sakthi, S.K. Sarkar, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, J.S. Sakthi, J.S. Sakthi, J.S. Sakthi, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, Francisco Rodríguez‐González, Francisco Rodríguez‐González, Francisco Rodríguez‐González, Francisco Rodríguez‐González, Francisco Rodríguez‐González, M.P. Jonathan Priyadarsi D. Roy, Priyadarsi D. Roy, M.P. Jonathan Priyadarsi D. Roy, J.S. Sakthi, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, S. Velumani, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, Francisco Rodríguez‐González, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, Priyadarsi D. Roy, M.P. Jonathan, M.P. Jonathan, J.S. Sakthi, S.K. Sarkar, Priyadarsi D. Roy, M.P. Jonathan, M.P. Jonathan, Priyadarsi D. Roy, Priyadarsi D. Roy, M.P. Jonathan M.P. Jonathan Francisco Rodríguez‐González, M.P. Jonathan Priyadarsi D. Roy, S.K. Sarkar, Priyadarsi D. Roy, S. Velumani, M.P. Jonathan, M.P. Jonathan Francisco Rodríguez‐González, M.P. Jonathan M.P. Jonathan, J.S. Sakthi, J.S. Sakthi, M.P. Jonathan, M.P. Jonathan S.K. Sarkar, M.P. Jonathan, M.P. Jonathan

Summary

Microplastics were found in high abundance across nine tourist beaches in South Africa, with polypropylene and rayon dominating, and concentrations highest in Durban city beaches influenced by coastal currents and urban plastic inputs. Surface analysis revealed weathering features consistent with long-term environmental exposure.

Study Type Environmental

Microplastics (MPs) existence, identification and source were investigated by studying a total of 2539 particles in 349 sediment samples from nine different tourist beaches [(Sodwana & Richard Bays; Ballito, Mtunzini, Tugela, Zinkwazi, Ballito (north & south) and Durban north & south)] of southeastern coast of South Africa. They are more abundant in the beaches of the Durban city, followed by the Sodwana & Richards Bays, Ballito and Mtunzini. The black particles prevailed over the blue, white, pink, brown, red and green MPs. Supremacy of MPs in the Durban city is mainly due to the longshore coastal Agulhas current in the South eastern side of African coast aiding the degradation of primary plastics coming both from continent and sea. SEM images provided the evidences of weathering/degrading process through grooves, cracks, deep fissures, sharp edges and layered degradation showing signs of oxidation due to long term exposure in the coastal environment. EDS results suggested presence of elements (i.e. C, -O, Si, Al, Fe, Ca, Mg, Na, K, S, Ti, Cu and Zn introduced during the production of plastics as additives. FTIR spectral matches identified from all samples infer polypropylene (PP) (62%), rayon (RY) (17.2%), polycarbonate (PC) (29.8%), nylon (NY) (18.92%), polyester (PES) (31.2%), polyacrylonitrile (PAN) (11.21%) and polystyrene (PS) as well as low (28.9%) & high (36.1%) polyethylene terephthalate (PET). Higher abundance of MPs in the beaches of South Africa in comparison with studies around the world emphasizes the need of dispersal monitoring and use of plastic materials/polymers.

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