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Scientists quantitatively identify main causes of Russian once-in-a-century heatwave

A new study reveals that surface dynamics and aerosol processes were the key drivers behind the extraordinary 2010 heatwave in western Russia. The researchers used a model-free approach to quantify the contributions of individual radiative and dynamical processes, finding surface dynamics to be the primary contributor.

SourceInstitute of Atmospheric Physics, Chinese Academy of Sciences·JournalAtmospheric and Oceanic Science Letters·DateNov 20, 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

Moisture changes the rules of atmospheric traffic jams

New research from Purdue University reveals how moisture influences atmospheric blocking, a phenomenon that often drives heat waves, droughts, cold outbreaks and floods. The study introduces a new mechanism showing that moisture-induced diabatic heating strengthens ridge blocks but weakens dipole blocks.

SourcePurdue University·JournalNature Communications·DateAug 21, 2025

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

Damaging cluster of UK winter storms driven by swirling polar vortex miles above Earth

Scientists have identified a new reason for UK winter storm clusters, pointing to stronger winds in the Arctic stratosphere. This research reveals that an intense swirling vortex of winds miles above the Arctic can make severe winter storms more likely, and may offer early warnings for forecasters up to a month before they happen.

SourceUniversity of Leeds·JournalCommunications Earth & Environment·TypeData/statistical analysis·DateMar 27, 2025

Regional role in the discrepancy of Hadley circulation intensity trends between reanalysis data and models

A new study reveals regional differences in Hadley circulation intensity trends, with the Indian Ocean region playing a key role in the discrepancy. The research highlights the importance of accurately simulating diabatic heating, zonal friction, and greenhouse gas external forcing to improve climate model accuracy.

SourceInstitute of Atmospheric Physics, Chinese Academy of Sciences·JournalAtmospheric and Oceanic Science Letters·DateMar 26, 2025

Earth and space share the same turbulence

A team of researchers found that air turbulence in the thermosphere exhibits the same physical laws as wind in the lower atmosphere, leading to a new unified principle for Earth's environmental systems. This discovery can potentially improve future forecasting of both Earth and space weather.

SourceKyushu University·JournalGeophysical Research Letters·TypeData/statistical analysis·DateJun 7, 2024

Ozone's influence on exoplanetary climate -- New study

A new study led by Dr. Assaf Hochman uncovers ozone's impact on atmospheric stability and temperature distribution on Proxima Centauri b, a habitable exoplanet tantalizingly close to Earth's solar system. The research highlights the importance of considering interactive ozone in understanding Earth-like exoplanets.

SourceThe Hebrew University of Jerusalem·JournalMonthly Notices of the Royal Astronomical Society·TypeComputational simulation/modeling·DateMay 8, 2024

Pusan National University researchers decode key airflow pattern impacting global climate

A recent study published in npj Climate and Atmospheric Science reveals that changes in subtropical and midlatitude eddy activity control the variation of the Hadley cell edge latitude. The researchers analyzed 41 years of data and found associations with El Niño, La Niña, and the Arctic oscillation.

SourcePusan National University·Journalnpj Climate and Atmospheric Science·TypeComputational simulation/modeling·DateJan 31, 2024

Shape matters: How microplastic travels that far

A new study reveals that microplastic fibers settle substantially slower than spherical particles in the atmosphere, allowing them to reach remote regions such as Arctic glaciers. The research suggests that these fibers could even reach the stratosphere, with potential implications for cloud processes and ozone depletion.

SourceMax Planck Institute for Dynamics and Self-Organization·JournalEnvironmental Science & Technology·TypeExperimental study·DateJan 9, 2024

Data-driven regional ocean models essential for planning

Researchers developed a precise historical reconstruction of the Red Sea circulation using fine-grained regional data. The new analysis reveals new characteristics of current circulation, temperature, salinity, and oceanic behavior, improving decision-making for megadevelopments like those in Saudi Arabia.

SourceKing Abdullah University of Science & Technology (KAUST)·JournalBulletin of the American Meteorological Society·DateOct 2, 2023

Oceans release microplastics into the atmosphere

A team of researchers has determined that microplastic particles are present in the marine atmosphere, even in remote parts of the world. The study found that different types of plastics, including polyester and polyethylene terephthalate, were detected in air samples collected from various sites along the Norwegian coast.

SourceUniversity of Oldenburg·JournalNature Communications·TypeObservational study·DateAug 16, 2023

Massive iceberg discharges during the last ice age had no impact on nearby Greenland, raising new questions about climate dynamics

A new study from Oregon State University found that massive iceberg discharges during the last ice age triggered rapid warming in Antarctica but had no effect on temperatures in Greenland. This discovery challenges current understanding of global climate dynamics and raises more questions than answers.

SourceOregon State University·JournalNature·TypeData/statistical analysis·DateApr 24, 2023

Why are forests turning brown in summer?

Researchers found that exceptional weather conditions over several years are turning European forests brown. Characteristic weather patterns, such as prolonged dry periods and high temperatures, precede these events, with a legacy effect contributing to future low-forest greenness.

SourceETH Zurich·JournalBiogeosciences·DateMar 31, 2023

Pusan National University researchers uncover causes for increased compound droughts & heatwaves in East Asia

Researchers from Pusan National University studied compound extreme weather events in northern East Asia and found that a lack of soil moisture led to increased evaporative stress, amplifying heatwaves and triggering compound droughts and heatwaves. Understanding these dynamics is crucial for societal safety.

SourcePusan National University·Journalnpj Climate and Atmospheric Science·TypeObservational study·DateMar 7, 2023

Early Cretaceous shift in the global carbon cycle affected both land and sea

A recent geological study has confirmed that major changes in the global carbon cycle occurred on land during the early Cretaceous Period, matching those recorded in marine sedimentary rocks. The research, led by Matt Joeckel of the University of Nebraska-Lincoln, used chemical and radioactivity-based analyses to find evidence of two d...

SourceUniversity of Nebraska-Lincoln·JournalGeosciences·TypeObservational study·DateFeb 22, 2023

North or south? How the position of sea surface temperature anomalies in the North Pacific can influence the stratospheric polar vortex in the Arctic

A study found that a northward position of North Pacific sea surface temperature anomalies weakens the Arctic stratospheric polar vortex. This weakening can lead to Eurasian cooling and negative surface temperature anomalies.

SourceInstitute of Atmospheric Physics, Chinese Academy of Sciences·JournalAdvances in Atmospheric Sciences·DateJan 24, 2023

VLA and ALMA study Jupiter and Io

A recent VLA and ALMA study investigated Jupiter's atmosphere and Io's volcanic activity, shedding light on the giant planet's complex dynamics. The research revealed the vertical structure of Jupiter's atmosphere and found high-temperature compounds, including NaCl and KCl, in Io's atmosphere, suggesting differences in subsurface magm...

SourceNational Radio Astronomy Observatory·JournalThe Planetary Science Journal·TypeObservational study·DateDec 13, 2022