We can't find the internet
Attempting to reconnect
Something went wrong!
Hang in there while we get back on track
Mechanistic Investigation of Microplastic Generation Due to Surface Wear
No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →
More Papers Like This
Erosion Behaviour of Different Microplastic Particles
AI summary Read the abstract
Different microplastic polymer types erode at varying rates depending on particle shape, material hardness, and environmental abrasion forces, generating secondary microplastic fragments over time. Understanding erosion behavior helps predict the long-term fragmentation fate of plastic debris and the continuing generation of smaller, more hazardous particles in the environment.
Micro-abrasive Surface for Producing Microplastics for Testing
AI summary Read the abstract
Researchers developed a controlled method for producing microplastic particles in the micrometer size range using a pin-on-disc wear machine, allowing laboratory studies to use particles with consistent, well-characterized shapes and compositions. Standardized test particles like these are essential for producing reliable and comparable data on how microplastics affect living organisms.
Generation and Management of Microplastic Waste
AI summary Read the abstract
Microplastics are generated throughout the plastic lifecycle from manufacturing to disposal and persist in both terrestrial and aquatic environments due to their resistance to degradation. Effective waste management strategies that intercept microplastics before environmental release are critical to preventing further accumulation in soils, water, and living organisms.
Replicating real-world microplastics with accelerated physicochemical ageing
AI summary Read the abstract
Researchers developed methods to artificially age microplastics in the lab so they accurately replicate the physicochemical properties of microplastics found in real-world environments. Environmentally realistic aged microplastics are essential for generating reliable toxicology data, since fresh plastic particles behave differently than weathered ones that organisms actually encounter.
A Review on the Fate of Microplastics: Their Degradation and Advanced Analytical Characterization
AI summary Read the abstract
This review covers current methods for extracting, degrading, and analytically characterizing microplastics from environmental and biological samples, highlighting major gaps in photo-oxidation, biodegradation, and photo-thermal degradation approaches. Establishing effective microplastic degradation methodologies is essential for reducing their prolonged environmental persistence and preventing ongoing bioaccumulation of plastic fragments and associated toxic chemicals in food chains.
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.