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March 3, 2026Environmental Quality Management0 citations

Microplastic Pollution in Urban Natural Lakes of Kathmandu Valley, Nepal

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KMKishor Kumar MaharjanTribhuvan UniversityAMAngel Saru MagarTribhuvan UniversityRDRam Prasad DhungelTribhuvan University

Key Points

  • Microplastic was detected in both lakes, with concentrations up to 12.4 particles/L in Nagdaha Lake and 3.2 particles/L in Taudaha Lake.
  • Concentrations of microplastics significantly exceeded in Nagdaha Lake, showing mean levels of 4.45 ± 2.90 particles/L.
  • Filtration and density separation techniques were used to isolate microplastics from surface water samples collected during the rainy season.
  • Findings highlight the impact of urban activities, pointing to the need for effective pollution mitigation strategies.

Abstract

ABSTRACT Although microplastic (MP) pollution in various lakes worldwide has been mostly studied, research on natural urban lakes in the Kathmandu Valley is limited. To fill this gap, the study examined the abundance and characteristics of MP in the surface waters of Taudaha and Nagdaha Lakes. Samples were collected from the shoreline of both lakes in the rainy season. It was then subjected to filtration and density separation to isolate suspected MP particles. Morphological categorization was performed using a stereomicroscope. Polymer types were confirmed through Fourier transform infrared (FTIR) spectroscopy by matching spectra with those of previous researchers. FTIR identification is conducted only on larger‐sized particles (1000 µm). Results showed that MP was detected at every site in both lakes, with concentrations from 0.4 to 3.2 particles/L in Taudaha Lake (mean 1.64 ± 0.72 particles/L) and 0.8 to 12.4 particles/L in Nagdaha Lake (mean 4.45 ± 2.90 particles/L). MP concentrations in Nagdaha Lake were significantly higher than in Taudaha Lake. Morphological analysis revealed that MP concentrations were predominantly observed as fibers (Taudaha, 96% and Nagdaha, 91%), followed by fragments and film. MP was mostly blue and pink in color. Polymer detection was limited to only two types: polyethylene and polypropylene. MP pollution in such lakes can be mainly attributed to human activities such as restaurants, cloth washing, proximity to roads, and tourism. This study provides important baseline information for the future monitoring of urban lake ecosystems and points to directions for future environmental management.

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Cite This Study

Maharjan et al. (2026) studied this question.

synapsesocial.com/papers/69a75bcfc6e9836116a23d0bhttps://doi.org/10.1002/tqem.70293
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