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March 5, 2026Water2 citationsOpen Access

Event-Based Variations in Microplastic Pollution in a Small Agricultural River During Rainfall

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WWWidyastuti Kusuma WardhaniKYK YokotaTMTeuku Mahlil

Key Points

  • The aim is to understand how rainfall impacts microplastic transport in agricultural rivers.
  • Conducted sampling at three points in the Umeda River during six rainfall events.
  • Measured microplastic fluxes and river discharge (L-Q relationship).
  • Analyzed particle characteristics and dynamics during different hydrological stages.
  • Microplastic flux positively correlates with river discharge (L-Q model).
  • A tenfold increase in discharge leads to a 600-fold increase in microplastic flux.
  • Rainfall results in MP abundance four times higher than baseflow, with a peak of 6736 particles/s.

Abstract

Agricultural rivers are often silent receivers of microplastics (MPs) from diffuse, non-point sources; however, their pollution dynamics during rainfall events remain poorly understood. In this study, MP transport was investigated at three sampling points in an agricultural river catchment, where mulching films are used, and sewage sludge is not applied. Sampling was conducted in the Umeda River and its tributaries during six sampling events. MP flux exhibited a strong positive correlation with river discharge (L–Q relationship; n = 1.49–1.61, R2 = 0.67–0.87). The L–Q model indicates that a tenfold increase in discharge results in approximately a 600-fold increase in MP flux and a 1000-fold increase in total suspended solid flux. MP abundance during rainfall was up to four times higher than that during baseflow, ranging from 73 ± 64 to 200 ± 111 particles/m3, while peak flux reached 6736 particles/s, with an MP mass of 811 mg/s. Regarding particle characteristics, rainfall enhanced the heterogeneity of MPs, although fragments and polyethylene/polypropylene polymers remained consistently dominant across all hydrological stages. First-flush behavior was observed at HU, with more than half of the total MP mass exported within the initial 50% of the event flow volume. These findings help to inform mitigation strategies that should prioritize a reduction in upstream plastic inputs in order to effectively manage MP transport in agricultural rivers.

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Cite This Study

Wardhani et al. (2026) studied this question.

synapsesocial.com/papers/69a91d8dd6127c7a504c066fhttps://doi.org/10.3390/w18050602
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Spatial and temporal variability in in-stream microplastic loads can impact downstream plastic export2024
  2. 2Rainfall-induced lateral and vertical microplastic transport of varying sizes in agricultural fields2025
  3. 3A Comprehensive Review of MP Pollution in Global Rivers: Distribution Patterns and Fluvial Transport Dynamics2026
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  5. 5Subsurface transport of microplastics in riverine sediment: Impacts of different rain events and particle density2024 · 2 citations