We can't find the internet
Attempting to reconnect
Something went wrong!
Hang in there while we get back on track
Airborne Microplastics in Laundry Centers and Its Potential Health Risk
No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →
More Papers Like This
Microplastics in Air and Their Health Hazard
AI summary Read the abstract
Researchers reviewed the occurrence, distribution, and health hazards of airborne microplastics in indoor and outdoor environments, finding that inhalation is a significant and underappreciated exposure route with potential respiratory and systemic health consequences.
Microfiber emissions through domestic laundry; an estimation of microfiber release and their fate in a medium-sized city
AI summary Read the abstract
Measuring microfiber emissions from household laundry in Greek homes, researchers found over 63,000 fibers released per wash cycle, estimating that a city of 100,000 residents emits more than 359 billion microfibers annually — with roughly 5.2 kg reaching aquatic environments even with 99.9% wastewater treatment retention. This scale of domestic laundry emissions underscores the need for upstream textile innovations and in-machine filtration to meaningfully reduce microfiber pollution at its source.
Microplastics in Indoor Air and Dust: Characterization, Risk Factors, and Health Risks
AI summary Read the abstract
This review synthesizes global data on microplastic concentrations in indoor air and dust across different building types and income regions, finding that lower-middle-income countries — especially in Southeast Asia and South America — have the highest indoor airborne microplastic levels. The results underscore that humans face continuous inhalation, ingestion, and dermal exposure to microplastics in everyday indoor environments, with documented links to oxidative stress, inflammation, and multi-organ toxicity.
From atmosphere to lungs: health risks of airborne microplastics in public spaces
AI summary Read the abstract
Sampling air from bus terminals, supermarkets, hospitals, and other public spaces in Kerala, India revealed microplastic concentrations up to 960 particles/kg, with PVC fibers posing the highest cancer risk index and infants facing the greatest estimated daily intake. The findings show that densely occupied public spaces in tropical, underrepresented regions present significant airborne microplastic inhalation risks, particularly for vulnerable age groups.
Ubiquitous exposure to microfiber pollution in the air
AI summary Read the abstract
Researchers measured airborne microfiber concentrations at an intercity bus terminal and a university campus, finding that lightweight plastic fibers from wastewater and textiles freely float in indoor and outdoor air and can be inhaled like other fine particulate pollutants.
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.