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Butterflies on the move to higher ground

A new study by Dr Esme Ashe-Jepson finds that butterflies are primarily responding to climate change by shifting their distributions to cooler elevations. Large and pale species have an advantage in thermoregulation, leading to changes in butterfly communities along the elevational gradient.

SourceUniversity of Würzburg·JournalCommunications Biology·DateAug 17, 2026

New study links erosion to natural hydrogen potential in mountain ranges

A new international study confirms that erosion plays a key role in forming and accumulating natural hydrogen in mountain ranges. The Pyrenees and Alps are identified as key targets for natural hydrogen exploration, with the right conditions allowing for efficient serpentinization and hydrogen production.

SourceUniversity of Lausanne·JournalJournal of Geophysical Research Solid Earth·TypeComputational simulation/modeling·DateMay 18, 2026

Natural hydrogen: a sustainable energy source in mountain ranges

A team of researchers found that mountain ranges with deep mantle rocks near the surface are ideal for large-scale natural hydrogen generation and accumulation. This process, called serpentinization, can produce up to 20 times more hydrogen than in rift environments, providing a promising alternative to synthetic hydrogen production.

SourceGFZ Helmholtz-Zentrum für Geoforschung·JournalScience Advances·TypeComputational simulation/modeling·DateFeb 19, 2025

A river is pushing up Mount Everest’s peak

A new study finds that a nearby eroding river gorge is causing Mount Everest's peak to rise by 15-50 meters over the past 89,000 years. The research suggests that the loss of landmass due to erosion is causing the mountain to spring upwards by as much as 2 millimeters a year.

SourceUniversity College London·JournalNature Geoscience·TypeImaging analysis·DateSep 30, 2024

China University of Geosciences (Beijing) researchers provide new insights into the formation of the Tibetan plateau

Researchers used paleoaltimetry technique to reveal early mountain range uplift in Southern Tibetan Plateau. The study found that the region had achieved an elevation of approximately 3.5 kilometers by 63 to 61 million years ago, challenging established notions of Tibetan Plateau formation.

SourceCactus Communications·JournalNature Geoscience·TypeExperimental study·DateSep 27, 2023

European bird communities move to cooler areas, but mountain ranges and coastlines ‘control the traffic’

Researchers found that two-thirds of European bird species shifted northeastward by an average of 100km over the past 30 years, with coastal communities facing extinction. Mountain ranges also controlled bird migrations, preventing some species from adapting to changing temperatures.

SourceUniversity of Helsinki·JournalProceedings of the National Academy of Sciences·TypeData/statistical analysis·DateJun 27, 2023

Earlier snowpack melt in the West could bring summer water scarcity

A new study from the University of Colorado Boulder documents more than 60 years of change in snowpack water storage across Western North America. The researchers found that snowpack water storage has significantly declined in over 25% of the Mountain West, leading to earlier water scarcity and impacts on agriculture and wildfire risk.

SourceUniversity of Colorado at Boulder·JournalNature·TypeData/statistical analysis·DateMay 22, 2023

Vanishing glaciers threaten alpine biodiversity

Researchers warn that climate change will lead to the loss of habitats for invertebrates in the European Alps, with many species forced to seek refuge in colder areas. The study predicts that by the end of the century, most species will have experienced consistent losses of habitat.

SourceUniversity of Leeds·JournalNature Ecology & Evolution·TypeData/statistical analysis·DateMay 4, 2023

How did the Andes Mountains get so huge? A new geological research method may hold the answer

Researchers used a novel method to study tectonic plate movement, finding two significant slowdowns in the South American plate over the past 15 million years. These events may have contributed to the widening of the Andes mountain range by causing unstable material to tear free and sink into the mantle.

SourceUniversity of Copenhagen - Faculty of Science·JournalEarth and Planetary Science Letters·DateApr 13, 2023

Alien plant species are spreading rapidly in mountainous areas

A new study reveals that alien plant species are expanding their range to higher elevations at an accelerated rate, affecting mountain ecosystems globally. The number of invasive species has increased by 16% worldwide over the past decade, with neophytes colonizing niches that match their climatic preferences.

SourceETH Zurich·JournalNature Ecology & Evolution·DateJan 26, 2023

How old is California’s Yosemite Valley?

Researchers from UC Berkeley used rock analysis to determine that the valley's impressive depth was formed since 10 million years ago, with most of it carved in the past 5 million years. The study employed a novel technique called helium-4/helium-3 thermochronometry to reconstruct the temperature history of the rocks.

SourceUniversity of California - Berkeley·JournalGeological Society of America Bulletin·TypeExperimental study·DateOct 20, 2022

Earthquakes and extreme rainfall lead to a significant increase in the rates of landslides in Nepal

A recent study found that earthquakes and extreme rainfall lead to a significant increase in landslide rates in Nepal during the monsoon season. The research, published in Nature Communications, reveals that landscape damage caused by the April 2015 Gorkha earthquake increased landslide risk by six times.

SourceUniversity of Plymouth·JournalNature Communications·TypeObservational study·DateNov 18, 2021

Sierra Nevada range should celebrate two birthdays

The Sierra Nevada mountain range in California has a complex history, with two distinct periods of formation. The ancient range was formed around 100 million years ago as a volcanic chain, but was later dwarfed by a vast plateau. Volcanic activity around 40 million to 20 million years ago lifted the Earth's surface, forming new mountai...

SourceStanford University·JournalGeological Society of America Special Papers·TypeData/statistical analysis·DateNov 15, 2021

High-flying ducks cross Himalayas

Scientists tracked ruddy shelducks crossing the Himalayas using satellite data, finding they fly above 5,000 metres and reach 6,800 metres altitude. This challenge likely requires adaptations to cope with lower oxygen levels, surpassing even bar-headed geese' records.

SourceUniversity of Exeter·JournalJournal of Avian Biology·DateSep 5, 2017

Better understanding seismic hazards

A team of ASU researchers has found that major earthquakes can actually down-drop mountains while uplifting the surrounding foothills, challenging conventional wisdom on the mechanisms of mountain building. This new understanding may help anticipate seismic hazards in advance of devastating earthquakes.

SourceArizona State University·JournalNature Geoscience·DateAug 22, 2016

Unexpected wood source for Chaco Canyon great houses

Researchers discovered that ancient Puebloans used trees from the Zuni and Chuska Mountains to build massive structures in Chaco Canyon. The switch to Chuska Mountain trees coincides with significant cultural developments in Chacoan culture, including changes in masonry style and construction volume.

SourceUniversity of Arizona·JournalProceedings of the National Academy of Sciences·DateDec 7, 2015

New risk factors for avalanche trigger revealed

Researchers at Queen Mary University of London have discovered that the amount of snow needed to trigger an avalanche in the Himalayas can be up to four times smaller than in the Alps. This finding has significant implications for mitigating natural hazards and safeguarding people on mountain villages, roads, and ski resorts.

SourceQueen Mary University of London·JournalInternational Journal of Fracture·DateApr 4, 2014