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March 14, 2026Air Soil and Water Research2 citationsOpen Access

Microplastic Contamination in a Freshwater-Dominated Subtropical Estuary: Multi-Approach Assessment of Spatial Dynamics, Sources and Ecological Hazard

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SMSribush MojumderJLJahanara Akhter LipiMAMd. Yusuf Ali

Key Points

  • The research aims to evaluate the distribution, characteristics, and ecological risks of microplastics in the Feni River Estuary.
  • Isolation of microplastics using density separation
  • Characterization through stereomicroscopy and Fourier Transform Infrared spectroscopy
  • Assessment of contamination indices and ecological risks
  • Multivariate analyses, including principal component analysis and hierarchical cluster analysis
  • Microplastics ranged from 426.66 to 546.66 items/m3 with no significant variation among stations
  • Polyethylene terephthalate (PET) was the most abundant polymer, followed by PE, PP, and PS
  • Moderate ecological risks were identified for PS, PET, and PE, while PP posed negligible risk
  • Spatial distribution showed variability driven by municipal discharge and aquaculture activities

Abstract

Microplastics (MPs) are a growing environmental concern due to their widespread occurrence, persistence, and ecological impacts. However, data on MP pollution in freshwater-dominated subtropical estuaries, particularly in South Asia, remain scarce. This study aimed to assess the spatial distribution, characteristics, sources, and ecological risks of MP contamination in the Feni River Estuary, Bangladesh. MPs were isolated by density separation, characterized by stereomicroscopy, and Fourier Transform Infrared spectroscopy. MP abundances ranged from 426.66 ± 140.23 to 546.66 ± 136.11 items/m 3 (mean: 468.33 ± 105.76 items/m 3 ), with no statistically significant variation among stations ( p > .05). MPs were dominated by fibers, followed by fragments and films, with minor foams (porous plastics) and microbeads (spherical primary plastics). Polymer characterization identified polyethylene terephthalate (PET, 78%) as the dominant type, with polyethylene (PE), polypropylene (PP), and polystyrene (PS) also detected, reflecting strong consumer plastic inputs and secondary fragmentation processes. Contamination indices (CF) indicated non-negligible pollution, with both the contamination factor (CF, 1 ⩽ CF 1) confirming moderate MP contamination. polymer hazard index (PHI) scores ranged from 0.1 to 9.1, placing polymers into risk categories I (<1) and II (1–10). Notably, PS (9.1), PET (8.6), and PE (7.3) were classified as moderate ecological risks (Category II), whereas PP (0.1) posed a negligible risk (Category I). Multivariate analyses using principal component analysis (PCA) and hierarchical cluster analysis (HCA) revealed spatial heterogeneity in MP distribution, influenced by municipal discharge, aquaculture, industrial inputs, and estuarine hydrodynamics.

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Cite This Study

Mojumder et al. (2026) studied this question.

synapsesocial.com/papers/69b4fbb1b39f7826a300bff9https://doi.org/10.1177/11786221261429893
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