We can't find the internet
Attempting to reconnect
Something went wrong!
Hang in there while we get back on track
Estuaries as Fragmentation Hotspots and Transport Regulators of Microplastics
No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →
More Papers Like This
Accumulation, transformation and transport of microplastics in estuarine fronts
AI summary Read the abstract
Estuarine fronts — dynamic boundary zones where river and ocean waters meet — act as convergence points that concentrate microplastics while also accelerating their fragmentation through turbulence, sediment interactions, and biological processes. Targeting these frontal hotspots for monitoring and remediation efforts could significantly improve our ability to intercept plastic pollution before it disperses into the open ocean.
The Role of Estuarine Axial Convergent Fronts in Microplastic Dispersal
AI summary Read the abstract
Researchers used a validated Delft3D hydrodynamic model coupled with Lagrangian particle tracking to show that axial convergent fronts in the Conwy estuary trap microplastics as an additional retention mechanism, but that high river-flow events disrupt these fronts and flush particles offshore—highlighting that estuarine microplastic fate depends on dynamic interplay between tidal and riverine forcing.
Enhanced microplastic fragmentation along human built structures in an urban waterway
AI summary Read the abstract
Investigating plastic waste along the Cooper River in New Jersey, researchers found that dams and other engineered structures accumulate and fragment plastic debris, with polystyrene making up 82.8% of identified microplastic fragments at dam sites. Urban water infrastructure inadvertently functions as a microplastic production zone, highlighting the need to address plastic litter at these aggregation points before fragmentation multiplies particle counts downstream.
Occurrence, Distribution, and Removal of Microplastics from Aquatic Ecosystems
AI summary Read the abstract
Researchers investigated the occurrence, distribution, and removal strategies for microplastics in aquatic ecosystems, reviewing how their pervasive presence and resistance to conventional treatment create persistent risks for both environmental and human health.
Tracing the Footprint of Microplastics: Transport Mechanism, Degradation, and Remediation in Marine Environment
AI summary Read the abstract
Researchers synthesized current knowledge on microplastic transport, degradation, and remediation in marine environments, examining how the high surface-area-to-volume ratio of these particles enables them to bind heavy metals, antibiotics, and persistent organic pollutants — amplifying their ecological impact across ocean systems.
Research digests by email
When a large batch of papers lands in the Atlas, we read through it and send a short write-up of what stood out.