We can't find the internet
Attempting to reconnect
Something went wrong!
Hang in there while we get back on track
Solvent interactions of car tire rubber samples with complex composition
No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →
More Papers Like This
Rubber Wear: History, Mechanisms, and Perspectives
AI summary Read the abstract
This comprehensive review of rubber wear mechanisms explains how tires and rubber products shed particles ranging from micrometer-scale dust to large chunks under different sliding and abrasion conditions. Tire wear particles are a major and often overlooked source of microplastic pollution in road runoff and urban environments, making this engineering research directly relevant to tracking plastic contamination pathways.
Study of moisture absorption by an organoplastic
AI summary Read the abstract
A comprehensive study of moisture absorption in unidirectionally reinforced organoplastic composites found the process follows Fickian diffusion with sorbed moisture distributed in strongly and weakly bound states, enabling a hierarchical calculation method from component to laminate level. This characterization framework supports reliable prediction of moisture-induced property changes in aramid fiber composites for structural applications.
Tire Wear Particles' Environmental Distribution and Potential Threats to Human Health
AI summary Read the abstract
Researchers reviewed the environmental distribution and health hazard profile of tire wear particles, highlighting that their complex rubber-carbon black-additive matrix—particularly the chemical 6PPD-quinone, which is acutely lethal to coho salmon below 1 µg/L—distinguishes them toxicologically from conventional microplastics and demands specialized monitoring and risk assessment frameworks.
Tire-wear Particles as a Major Component of Microplastics in the Environment
AI summary Read the abstract
Researchers analyzed non-exhaust traffic particles along busy German roads using microscopy and SEM-EDX, finding that tire-wear particles dominate coarse airborne particulate matter and accumulate additional hazardous metals from brake and road abrasion, making them a major and chemically complex microplastic pollutant in aquatic environments.
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.