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September 27, 2025Hydrology4 citationsOpen Access

Impact of Land Cover Change on Eutrophication Processes in Phewa Lake, Nepal

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RSRajan SubediBJBikesh JojijuMMMatthew W McBroom

Key Points

  • Eutrophication levels in Phewa Lake increased due to land cover changes and nutrient loading.
  • Evaluation of nutrient inputs found significant increases in nitrogen and phosphorus during monsoon seasons.
  • Landsat imagery from 1990 to 2021 was utilized alongside the InVEST model for comprehensive analysis.
  • Interventions are vital to manage urbanization's impact on water quality to prevent environmental degradation.

Abstract

Increasing demand for land and resources in Himalayan catchments is altering hydrological processes and threatening freshwater ecosystems. Sediment mobilization and nutrient fluxes, especially during monsoon rainfall events, are intensifying the degradation of water bodies. This study investigates land cover change and its effects on nutrient dynamics in the Phewa Lake catchment, Nepal. Landsat imagery from 1990 to 2021, processed through Google Earth Engine, was used to map land changes. Nutrient loading for the two time periods was estimated with the InVEST model. Surface soils were sampled across the catchment to analyze nitrogen and phosphorus distribution, while their particle-bound transport to the lake was assessed through riverbed sediments and the suspended sediments collected during monsoon rainfalls. Pre-monsoon water quality was examined to evaluate eutrophication levels across different lake zones. Results reveal forest recovery in the upper catchment, but agricultural land in the lower catchment is being rapidly converted to urban areas. While forest recovery has enhanced sediment retention, nutrient inputs to the lake, particularly nitrogen and phosphorus, have increased. Fertilizer leaching and untreated sewage emerge as key sources in rural and urban areas, respectively. Seasonal constraints of the dataset may underestimate the overall extent of water quality deterioration, as indicated by high nutrient loads in monsoon suspended sediments. Overall, this study highlights the dual effect of land cover change: forest regrowth coincides with rising nutrient discharge. Without timely interventions, growing urban populations in the region may face worsening water quality challenges.

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Cite This Study

Subedi et al. (2025) studied this question.

synapsesocial.com/papers/68d7b3e2eebfec0fc5236b82https://doi.org/10.3390/hydrology12100246
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