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Tethered balloon peers inside clouds to reveal hidden aerosol and electrical effects

A tethered balloon campaign revealed a strong link between aerosols and cloud droplets, with more aerosols containing more droplets and smaller average sizes. The study also found weak electrical activity in clouds without lightning, with no clear linear relationship to droplet number or size.

SourceInstitute of Atmospheric Physics, Chinese Academy of Sciences·JournalAdvances in Atmospheric Sciences·DateSep 24, 2026

Antarctic expedition reveals why Southern Ocean clouds remain one of climate science's greatest challenges

A new study reveals that climate models struggle to accurately represent Southern Ocean clouds, which significantly impact Earth's energy balance. The research team found that cloud phase and temperature are more important factors in simulating the Southern Ocean's surface energy budget than simply reproducing cloud frequency.

SourceResearch Organization of Information and Systems·JournalGeophysical Research Letters·DateSep 3, 2026

Sugar from the salty ocean can rise high into the atmosphere and plays an important role in the Arctic climate system

Researchers from the Leibniz Institute for Tropospheric Research measured sugars from seawater in the upper atmosphere over Spitsbergen, revealing their role in cloud formation and Arctic climate. The findings contribute to a better understanding of the interactions leading to above-average warming in the Arctic.

SourceLeibniz Institute for Tropospheric Research (TROPOS)·JournalAtmospheric Chemistry and Physics·TypeObservational study·DateAug 14, 2026

Observed high vapor supersaturation provides crucial evidence for aerosol convective cloud invigoration

Researchers have observed high water-vapor supersaturation in tropical convective clouds, which can enhance condensation and release latent heat. This finding supports the concept of condensational aerosol convective invigoration, where aerosol particles create new droplets and strengthen updrafts.

SourceInstitute of Atmospheric Physics, Chinese Academy of Sciences·JournalAdvances in Atmospheric Sciences·DateJun 18, 2026

Venus’ atmosphere jumps and waves

Researchers discovered a 'hydraulic jump' causing massive cloud waves on Venus, connected to the planet's superrotation and sulfuric acid vapor. This phenomenon may also impact future Mars missions, with potential implications for planetary exploration.

SourceUniversity of Tokyo·JournalJournal of Geophysical Research Planets·TypeComputational simulation/modeling·DateMay 8, 2026

Fantastic fungi found with ability to freeze water

Researchers have identified fungal proteins that can catalyze ice formation at high subzero temperatures, making them a potential alternative to toxic silver iodide in cloud seeding. The discovery could lead to safer weather modification and improved food preservation techniques.

SourceVirginia Tech·JournalScience Advances·DateMar 17, 2026

When trade routes shift, so do clouds: Florida State University researchers uncover ripple effects of new global shipping regulations

New research published in Atmospheric Chemistry and Physics reveals that cleaner fuels have reduced ship emissions' influence on cloud formation, helping refine global climate models. The study found a 67% decrease in cloud-altering abilities after the IMO regulations went into effect.

SourceFlorida State University·JournalAtmospheric Chemistry and Physics·DateNov 21, 2025

AMS Science Preview: Railways and cyclones; pinned clouds; weather warnings in wartime

Researchers investigate how adjacent cities exacerbate each other's heat island effects. A study also highlights the need for improved hindcasting infrastructure in climate science. Additionally, a campaign monitors pinned clouds over industrial sources of heat and finds that trees are more reliable against heat stress than buildings.

SourceAmerican Meteorological Society·JournalJournal of Applied Meteorology and Climatology·DateNov 21, 2025

New satellite study reveals a widespread transition zone in the sky, challenging climate models

A new study using CALIOP lidar data found nearly 10% of atmospheric profiles feature ambiguous transition zones between clouds and aerosols. The high frequency of these zones poses a challenge to current climate models, highlighting the need for more sophisticated representations of atmospheric particles.

SourceInstitute of Atmospheric Physics, Chinese Academy of Sciences·JournalAdvances in Atmospheric Sciences·DateNov 17, 2025

The chilling effect of air pollution

A new study shows that reducing air pollution has decreased the brightness of marine clouds, leading to accelerated warming. Scientists attribute 70% of this change to aerosols, and researchers are exploring ways to make clouds shinier without polluting the air.

SourceUniversity of Washington·JournalNature Communications·TypeData/statistical analysis·DateNov 5, 2025

When waves meet the shore

Researchers found that strong wave breaking along shorelines produces significant amounts of sea spray aerosols, increasing cloud condensation nuclei and aerosol mass concentration. This can lead to gross overestimations of sea spray aerosols in open oceans using coastal measurements.

Do you want to freeze a cloud? Desert dust might help

Researchers at ETH Zurich found that mineral dust particles can trigger freezing of cloud droplets, particularly important in northern regions where clouds form below freezing temperatures. This process affects sunlight reflection and precipitation generation, with major implications for climate models.

SourceETH Zurich·JournalScience·TypeData/statistical analysis·DateJul 31, 2025

Highly oxidised products from isoprene

Researchers at TROPOS found new product channels in isoprene's oxidative degradation, which could influence atmospheric aerosol growth and secondary organic matter formation. The study suggests that highly oxidised isoprene peroxy radicals are formed globally every year, potentially playing a significant role in these processes.

SourceLeibniz Institute for Tropospheric Research (TROPOS)·JournalNature Communications·TypeExperimental study·DateMay 26, 2025

Southern Ocean warming will mean a wetter West Coast

A Cornell University-led study predicts long-term increases in precipitation over East Asia and the Western U.S. as the Southern Ocean warms, regardless of climate mitigation efforts. The research suggests that accounting for cloud feedbacks in climate models can help explain uncertainties and improve predictions.

SourceCornell University·JournalNature Geoscience·DateApr 2, 2025

HKUST researchers’ breakthrough method reveals clouds amplify global warming far more than previously understood

Researchers at HKUST have developed a groundbreaking method that significantly improves accuracy in climate predictions. The new approach reveals tropical cloud feedback has amplified the greenhouse effect by 71%, narrowing uncertainty in one of the largest unknowns in climate science.

SourceHong Kong University of Science and Technology·JournalNature Communications·TypeObservational study·DateMar 25, 2025

Interpreting traces of arsenic in rain

The study found that clouds contain significantly more arsenic on average than rainwater, and biological processes play a key role in the global distribution of arsenic. The researchers also detected various types of arsenic compounds in rainwater samples, including methylated forms formed by bacteria and plants.

SourceETH Zurich·JournalNature Communications·DateJan 9, 2025

Electric field signals reveal early warnings for extreme weather, study reveals

Researchers analyzed data from southern Israel to find significant electric field changes during heavy precipitation, suggesting early indicators for extreme weather. The study highlights the potential of incorporating electric field observations into weather monitoring systems for enhanced nowcasting capabilities.

SourceThe Hebrew University of Jerusalem·JournalAtmospheric Research·TypeObservational study·DateNov 14, 2024

Satellite data fusion enhances the early detection of convective clouds

Researchers have developed a new satellite data fusion method to enhance the early detection of convective clouds. By combining high-resolution texture information with multispectral data, forecasters can identify smaller-scale convective clouds earlier and improve the precision of predicting where these clouds will form and intensify.

SourceInstitute of Atmospheric Physics, Chinese Academy of Sciences·JournalAtmospheric and Oceanic Science Letters·DateSep 26, 2024

EarthCARE's lidar shows particles in the atmosphere in detail

The ATLID atmospheric lidar is a state-of-the-art instrument that records detailed vertical profiles of aerosols and clouds in the atmosphere. The new data from EarthCARE's lidar will significantly advance our understanding of aerosols, clouds, and their interactions with climate change.

SourceLeibniz Institute for Tropospheric Research (TROPOS)·JournalBulletin of the American Meteorological Society·TypeObservational study·DateSep 16, 2024

Exceptional warm air intrusions and omnipresent aerosol layers in the stratosphere.

Researchers have gained insights into clouds in Antarctica using a new platform, discovering warm air intrusions and sulphate aerosol at high altitudes. The study, conducted over 12 months, was the first to investigate vertical distribution of aerosol particles and clouds above the German Neumayer Station III.

SourceLeibniz Institute for Tropospheric Research (TROPOS)·JournalBulletin of the American Meteorological Society·TypeObservational study·DateSep 13, 2024

Cloud shift from day to night amplifies global warming

A recent study found that cloud cover changes more during the day than at night on a global scale, leading to increased greenhouse effect and amplified global warming. The asymmetry in cloud cover is attributed to stability in the lower troposphere due to rising greenhouse gas concentrations.

SourceUniversität Leipzig·JournalScience Advances·TypeObservational study·DateJun 20, 2024