Transport and mass budget of biodegradable microplastics in the Seto Inland Sea
en-GBde-DEes-ESfr-FR

Transport and mass budget of biodegradable microplastics in the Seto Inland Sea

07/07/2025 Ehime University

Microplastics (MPs) pollution is a prevalent environmental problem that affects ecosystems globally. Despite the growing research on the environmental effects of MPs, a significant research gap remains in understanding the differences of environmental behavior and distribution patterns between biodegradable MPs and traditional MPs.
Using a three-dimensional hydrodynamic model and treating MPs as tracers with vertical velocity, this study simulated the transport of positively, neutrally, and negatively buoyant biodegradable MPs from rivers. The results show that positively buoyant MPs have significant seasonal variations and are mainly distributed in the surface layer. Neutrally buoyant MPs are distributed in all water depths, with a high (low) concentration in the eastern (western) Seto Inland Sea (SIS), characterized by winter mixing and summer stratification. Negatively buoyant MPs accumulate in the sediments and exhibit lower concentrations in seawater. Positively and neutrally buoyant MPs mainly outflow from the SIS into the Pacific Ocean, whereas negatively buoyant MPs hardly leave the SIS and are primarily deposited and degraded near river mouths. A settling velocity of –10–6 to –5 × 10–5 m s–1 (downward) greatly affects the concentration of MPs in seawater. However, large upward and downward velocities outside this range do not result in pronounced changes. Due to their inherent resistance to degradation, non-biodegradable MPs persist for a long time in the ocean. When these MPs sink into sediments, they can accumulate continuously without significant degradation. As the settling velocity increases, the ability of particles to leave the estuary decreases, exacerbating their accumulation on the seafloor. These accumulated non-biodegradable MPs may exacerbate a long-term impact on the environment.
With a higher degradation rate in sediments than in seawater, the biodegradable MPs do not accumulate in the sediments and can eventually reach a stable concentration in the sediments. The degradation of MPs in the sediment and seawater also reduces the outward flux of MPs from the SIS into the Pacific Ocean.
Distribution characteristics and transport processes of biodegradable microplastics in the Seto Inland Sea, Japan,
Yu Bai, Xinyu Guo, Takashi Masaki, Takako Kikuchi, Tomoya Kataoka, Hirofumi Hinata, Xueting Zhao, and Yaxian Li,
Journal of Hazardous Materials, 2025, 491: 137911, 10.1016/j.jhazmat.2025.137911.
Fichiers joints
  • 【Conceptual scheme of the microplastics (MPs) transport module.】The physical and biogeochemical processes controlling the behavior of MPs in the SIS are advection and diffusion, deposition, resuspension, and degradation processes. ©Xinyu Guo, Ehime University
  • 【Relationship between settling velocity and the normalized masses of MPs.】A positive value indicates the proportion of riverine MPs retained within the SIS, and a negative value represents the proportion of riverine MPs that either outflow or degrade. ©Xinyu Guo, Ehime University
  • 【Relationships between degradation parameters, settling velocity, and the normalized masses of MPs.】The first group represents biodegradable microplastics, while the fourth group represents non-biodegradable microplastics. The second and third groups represent intermediate values. ©Xinyu Guo, Ehime University
07/07/2025 Ehime University
Regions: Asia, Japan
Keywords: Science, Earth Sciences, Environment - science

Disclaimer: AlphaGalileo is not responsible for the accuracy of content posted to AlphaGalileo by contributing institutions or for the use of any information through the AlphaGalileo system.

Témoignages

We have used AlphaGalileo since its foundation but frankly we need it more than ever now to ensure our research news is heard across Europe, Asia and North America. As one of the UK’s leading research universities we want to continue to work with other outstanding researchers in Europe. AlphaGalileo helps us to continue to bring our research story to them and the rest of the world.
Peter Dunn, Director of Press and Media Relations at the University of Warwick
AlphaGalileo has helped us more than double our reach at SciDev.Net. The service has enabled our journalists around the world to reach the mainstream media with articles about the impact of science on people in low- and middle-income countries, leading to big increases in the number of SciDev.Net articles that have been republished.
Ben Deighton, SciDevNet
AlphaGalileo is a great source of global research news. I use it regularly.
Robert Lee Hotz, LA Times

Nous travaillons en étroite collaboration avec...


  • e
  • The Research Council of Norway
  • SciDevNet
  • Swiss National Science Foundation
  • iesResearch
Copyright 2025 by DNN Corp Terms Of Use Privacy Statement