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Microplastics in Sediment of Kuakata Beach, Bangladesh: Occurrence, Spatial Distribution, and Risk Assessment

Frontiers in Marine Science 2022 94 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
M. Belal Hossain M. Belal Hossain Partho Banik, M. Belal Hossain Partho Banik, As-Ad Ujjaman Nur, M. Belal Hossain M. Belal Hossain M. Belal Hossain M. Belal Hossain Tasrina Rabia Choudhury, M. Belal Hossain Md Abu Noman, M. Belal Hossain Jun Sun, M. Belal Hossain Md Abu Noman, Partho Banik, Partho Banik, M. Belal Hossain M. Belal Hossain M. Belal Hossain M. Belal Hossain Qi Yu, Partho Banik, M. Belal Hossain Partho Banik, Qi Yu, Qi Yu, Qi Yu, Partho Banik, Partho Banik, Jun Sun, Partho Banik, As-Ad Ujjaman Nur, As-Ad Ujjaman Nur, As-Ad Ujjaman Nur, As-Ad Ujjaman Nur, M. Belal Hossain Partho Banik, Partho Banik, As-Ad Ujjaman Nur, Partho Banik, As-Ad Ujjaman Nur, Partho Banik, Partho Banik, Partho Banik, M. Belal Hossain Partho Banik, Tasrina Rabia Choudhury, Jun Sun, Jun Sun, Md Abu Noman, Partho Banik, Partho Banik, As-Ad Ujjaman Nur, As-Ad Ujjaman Nur, As-Ad Ujjaman Nur, Partho Banik, Partho Banik, As-Ad Ujjaman Nur, Partho Banik, Partho Banik, Partho Banik, Tasrina Rabia Choudhury, Tasrina Rabia Choudhury, Partho Banik, Partho Banik, Partho Banik, Partho Banik, Partho Banik, Partho Banik, As-Ad Ujjaman Nur, As-Ad Ujjaman Nur, Partho Banik, As-Ad Ujjaman Nur, As-Ad Ujjaman Nur, Partho Banik, Partho Banik, Qi Yu, Jun Sun, Samia Islam Liba, Samia Islam Liba, Samia Islam Liba, Partho Banik, Partho Banik, Partho Banik, Partho Banik, Qi Yu, As-Ad Ujjaman Nur, As-Ad Ujjaman Nur, As-Ad Ujjaman Nur, Qi Yu, Jun Sun, M. Belal Hossain Tasrina Rabia Choudhury, Partho Banik, Md Abu Noman, Qi Yu, Qi Yu, Qi Yu, Partho Banik, Qi Yu, M. Belal Hossain Qi Yu, M. Belal Hossain M. Belal Hossain Jun Sun, Samia Islam Liba, Jun Sun, M. Belal Hossain M. Belal Hossain M. Belal Hossain M. Belal Hossain M. Belal Hossain M. Belal Hossain M. Belal Hossain M. Belal Hossain M. Belal Hossain M. Belal Hossain Qi Yu, M. Belal Hossain Tasrina Rabia Choudhury, M. Belal Hossain

Summary

Researchers conducted the first assessment of microplastic contamination in Kuakata Beach sediments in Bangladesh, finding widespread distribution with fibers and fragments as dominant types, and identifying tourism-related single-use plastics as a primary source of pollution.

Study Type Environmental

Kuakata beach, known as Daughter of Sea in Bangladesh, has drawn a growing number of tourists from all over the world, leading to the higher use of single plastic products. This study was a first attempt to describe the occurrence, spatial distribution, and ecological risk of microplastics (MPs) in Kuakata beach sediments. A total of 24 surface sediment samples were collected from the intertidal zone of the beach, and MPs were extracted using the density separation method and a stereomicroscope. Fourier transform infrared (FTIR) spectroscopy was used for qualitative and quantitative identification. The results revealed that the average MPs in the beach sediment were 232 ± 52 items kg –1 dry weight, which was much higher than many other sandy beaches throughout the world. Analyses of variance showed a significant ( p < 0.01) difference among the mean abundance of MPs in sampling points. Fibers were dominated in every sampling point with an average of 123 ± 27 item kg –1 . Most of the MPs observed were colored (60%), and the rest were transparent (40%). It was found that the size range of 1–5 mm MPs constituted over half (55%) of total MPs covering an average value of 127 ± 34 items kg –1 . Three polymer types were identified in the sediment samples through FTIR analysis which followed the decreasing order of polyethylene terephthalate > polyethylene > polypropylene. Correlation analysis showed a positive relationship between the abundance of MPs and the finer grain size of sediment ( p = 0.055; r = 0.7), indicating grain size-controlled the density of MPs. The pollution load index was assessed to estimate the ecological risk and found that the beach sediment of Kuakata belonged to the risk category I of the pollution index. This investigation provided preliminary information on MPs pollution in the marine ecosystem that the policymakers can use to take appropriate management approaches.

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