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Updated: May 23, 2026

Sampling, Sorting, and Characterizing Microplastics in Aquatic Environments with High Suspended Sediment Loads and Large Floating Debris
Published on: July 28, 2018
Hydrodynamic controls on microplastic transport in tidal estuaries: A process-based review and conceptual framework
Ravena Santiago Alves1, Michael Barbosa Viana1
1Institute of Marine Sciences (LABOMAR), Federal University of Ceará (UFC), Avenida da Abolição, 3207, Meireles, 60165-081, Fortaleza, Ceará, Brazil.
Microplastic abundance in estuaries varies with tidal cycles. Hydrodynamic factors like river discharge and tidal currents significantly influence microplastic transport, retention, and export, impacting estuarine ecosystems.
Area of Science:
- Environmental Science
- Oceanography
- Ecotoxicology
Background:
- Microplastic pollution is a growing concern in estuarine environments.
- Tidal cycles significantly influence estuarine hydrodynamics and particle transport.
- Current understanding of microplastic dynamics in estuaries lacks integration across studies.
Purpose of the Study:
- To critically review the influence of tidal dynamics on microplastic abundance and characteristics in estuaries.
- To analyze hydrodynamic mechanisms controlling microplastic transport, retention, and redistribution.
- To propose a conceptual framework and recommendations for future research.
Main Methods:
- Literature review and critical analysis of existing studies on microplastics in estuarine waters.
- Synthesis of data on microplastic responses to tidal phases, amplitude, and estuarine hydrodynamics.
- Development of a conceptual framework integrating hydrodynamic controls and transport regimes.
Main Results:
- Microplastic responses to tidal forcing are highly variable, influenced by tidal asymmetry and estuarine conditions.
- Ebb-dominated regimes favor export, while flood-dominated regimes promote retention and recirculation.
- Spring tides increase transport and resuspension; neap tides favor deposition. Tidal dynamics minimally affect microplastic characteristics.
Conclusions:
- Tidal dynamics are crucial but complex drivers of microplastic fate in estuaries.
- A standardized approach and conceptual framework are needed for comparable estuarine microplastic research.
- Understanding these dynamics is vital for managing microplastic pollution in coastal ecosystems.
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