Tuesday, September 1, 2026
Science

Why atmospheric nanoparticles grow at similar rates everywhere

Aerosols have a profound influence on air quality, human health, clouds and climate, but new particle formation in the atmosphere has remained a scientific conundrum. Large fractions of airborne fine particulate matter consist of secondary organic aerosols (SOA) formed by gas-to-particle conversion...

Why atmospheric nanoparticles grow at similar rates everywhere
Image: Phys.org
Aerosols have a profound influence on air quality, human health, clouds and climate, but new particle formation in the atmosphere has remained a scientific conundrum. Large fractions of airborne fine particulate matter consist of secondary organic aerosols (SOA) formed by gas-to-particle conversion of organic precursor molecules in the atmosphere. The growth rates of these atmospheric nanoparticles, however, have remained enigmatic: They are often smaller and less dependent on condensable vapor concentration than expected.

Originally published at Phys.org

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