Researchers developed a new method to predict vent location forecasts by combining physics and statistics, successfully testing it on the Campi Flegrei caldera in Italy. The approach improves accuracy for predicting future eruptions and expanding ash plumes, providing valuable insights for land usage planning in volcanic areas.
Researchers found that volcanic eruptions in one hemisphere reduce monsoon rainfall in the same hemisphere, while enhancing it in other hemispheres. This phenomenon is attributed to changes in atmospheric circulation, which play a dominant role in rainfall responses.
Researchers from the University of Cambridge used 'crystal clocks' to estimate magma storage times near the Earth's crust-mantle boundary. They found that magma can be stored for over 1,000 years, helping improve models of volcanic eruptions and release of gases.
A new study suggests that super volcanic eruptions could significantly impact ozone layer recovery, with estimated depletions ranging from 2.5% to 6.4%. The research used transport and chemistry-climate models to simulate the effects of super volcanoes on stratospheric ozone during different recovery periods.
A new volcano monitoring platform, MOUNTS, analyzes satellite images using artificial intelligence to detect precursory signals and provide early warnings for volcanic eruptions. The platform, which integrates multiple sets of diverse data types, has been successfully tested on recent events and currently monitors 17 volcanoes worldwide.
Researchers found magnetic anomalies resembling those formed at mid-ocean ridge plate boundaries, suggesting Tamu Massif formed by mid-ocean ridge 'spreading' rather than as a shield volcano. The discovery weakens the accepted analogy between eruptions of continental flood basalts and oceanic plateaus.
Researchers have discovered thriving microbial communities in high-elevation ice spires in the Andes Mountains, offering insights into the limits of life on Earth. Snow algae were found to be present in these formations for the first time at an extreme elevation, providing a possible analogue for life on other planets.
Researchers have discovered rocks in Santorini cove similar to Martian basaltic material, with properties comparable to those of the Spirit and Curiosity rovers and Martian meteorites. The findings suggest that Santorini can serve as a low-cost resource for experiments and characterization of geological processes on Mars.
Researchers discovered that tidal fluctuations cause the magma chamber to expand, forcing the lower block of earth to slide up the fault, resulting in earthquakes. Even small stresses can trigger tremors, making it difficult to predict when an earthquake will occur.
Researchers discovered unusual rocks in East Africa that provide clues into the hazards associated with active volcanoes. The rocks, formed by intense eruptions, suggest that future eruptions at these volcanoes have the potential to cause significant harm, further from the volcano than previously thought.
A study found that the earthquakes were caused by subsurface movement of magma and fluid movement in Yellowstone. The swarm was divided into two clusters, one with Hebgen Lake aftershocks and another with a different origin. Researchers concluded that the events highlight the ongoing nature of earthquakes.
A Rutgers-led study found that the massive Laki volcano eruption in Iceland did not lead to an extreme summer heat wave in Europe. Instead, it caused unusually cold winters due to natural climate variability and high-pressure systems. The eruption also had devastating effects on Iceland's livestock and human populations.
Geoscientists have found evidence that material from the transition zone in Earth's mantle can percolate to the surface to form volcanoes. This discovery provides a new understanding of the relationship between the transition zone and volcanism, with implications for global geodynamics and the evolution of our planet.
A team of researchers led by Caitlin Griffith discovered a mysterious linear ice corridor on Titan's surface, which suggests the presence of past volcanic activity. The find sheds new light on Titan's unique atmospheric chemistry and potential for life
Volcano seismologist Jacqueline Caplan-Auerbach studies Loihi's 1996 eruption for parallels to Kilauea's 2018 activity, suggesting a caldera collapse mechanism. Loihi's recent increase in seismicity may indicate magma replenishment, predicting Kilauea could be quiet for a decade before reactivating.
Scientists have traced a prehistoric eruption to the lesser-known volcano Campi Flegrei in Naples, which dated back 29,000 years. The research, published in Geology, used computer models and sediment cores to identify the ash layer's origin.
Researchers verified that the 29,000-year-old Masseria del Monte Tuff eruption at Campi Flegrei caldera was responsible for widespread volcanic ash layers across the Mediterranean. The study suggests that this large-magnitude event occurred between known caldera-forming events, reducing the recurrence interval of such eruptions.
Scientists have discovered a major deep carbon sink linked to microbes near volcano chains, storing up to 19% more CO2 than previously believed. This finding reveals the critical role of microorganisms in buffering climate change by incorporating and forming calcite.
Researchers tracked the migration patterns of Galapagos giant tortoises over multiple years using GPS technology. The study found that these tortoises do not adjust their migration timing based on current environmental conditions such as fog, rain, and temperature, unlike many other migratory species.
Researchers from University of Science and Technology of China successfully developed a ruthenium-based single-atom alloy catalyst accelerating water electrolysis with lower overpotential. The catalyst shows improved stability and activity compared to commercial RuO2, making hydrogen production through water electrolysis more efficient.
The Cascades Arc is home to a string of volcanoes with radically different histories, sparking researchers to look beyond individual volcanoes. By analyzing heat flow, seismic wave speeds, and other data sources, scientists aim to understand why some volcanoes erupt differently than others.
A new study by University of East Anglia researchers reveals that steep cliffs on volcanoes can cause a reversal in the pattern of deformation, leading to inaccurate tilt measurements. This affects data collected by monitoring equipment, such as tiltmeters, which are often placed on caldera rims.
The Manaro Voui volcano in Vanuatu released the largest amount of sulfur dioxide in 2018, with 400k tons during its most active phase in July. The eruption had devastating effects, including acid rain and destruction of homes.
Researchers precisely dated Deccan Traps volcanic eruptions, finding four pulses that released toxic gases into the atmosphere. The findings suggest a possible link between volcanic activity and dinosaur extinction, but the exact cause remains uncertain.
The collection of over 1,700 animal and plant specimens from Sir Charles Lyell's era provides insight into volcano formation and palaeontology. The data is now easily searchable for researchers worldwide.
Researchers from the University of Bristol used satellite imagery to detect uplift on the northern flank of Agung volcano, indicating magma movement sideways as well as vertically. This study provides the first geophysical evidence of a connected plumbing system between Agung and Batur volcanoes.
Research led by UT Austin found that Ceres' crust keeps cryomagma liquid for up to 10 million years after impact, contradicting earlier estimates. The discovery helps scientists understand primary forces driving volcanic activity and could shed light on Europa's potential for life.
Researchers found that measuring the brightness of light alone is not enough to infer stratospheric aerosols, highlighting the need for an instrument with precise polarization measurements. A specialized Earth-orbiting instrument is necessary to obtain comprehensive information on aerosol properties and distribution.
A new study published in PNAS outlines a mission-driven approach to understanding the impacts of geoengineering and informs policy. The research focuses on releasing sulfate aerosols into the stratosphere, mimicking natural volcanic eruptions.
Researchers have detected deep low-frequency earthquakes at great depths, suggesting the movement of magmatic fluids beneath Laacher See Volcano. The earthquakes are characterized by unusually low frequencies and occur episodically in groups along a specific depth range.
Researchers created a model of the volcanic flank collapse caused by the eruption, predicting maximum wave heights and impact zones. The study aims to improve tsunami preparedness in the United States with advanced models and simulations.
A recent survey in Iceland found that only half of residents evacuated during the 2010 Eyjafjallajökull eruption did so. The researchers argue that a one-size-fits-all approach to evacuations is unlikely to work due to population diversification and changing community dynamics.
Researchers analyzed obsidian samples from various Neanderthal sites and found that common tools originated from specific sources. The study suggests a developed social network between groups of people from different regions during the Upper Paleolithic period.
The Sunset Crater volcano in Arizona, USA experienced a highly explosive sub-Plinian eruption with pyroclastic fall deposits, lava flows, and associated effects on pre-historic inhabitants. The eruption is considered one of the most explosive monogenetic eruptions studied to date.
A 3,980-year-old volcanic eruption on Deception Island had a Volcanic Explosive Index of 6 and ejected 30-60 cubic kilometers of ash. The caldera collapse triggered a seismic event and had significant climatic impacts in the southern region.
Researchers at Lancaster University found that Sólheimajökull glacier releases up to 41 tonnes of methane daily during summer months, exceeding average methane loss from non-glacial rivers. This discovery highlights the potential for glaciers to be significant sources of methane in the atmosphere.
Researchers found thousands of genetic variants linked to both pit and castle building behaviors, suggesting complex patterns of genetic variation and regulation. The study provides evolutionary insights into the development of these natural behaviors in cichlid fishes.
Researchers have found that the unique bird species on Inaccessible Island has its origins in South America, rather than Africa or Asia. The birds likely arrived on the island via debris or flying, and over time evolved into a flightless species due to abundant food sources and predator-free habitats.
Scientists have developed a new method and camera to measure the flow and speed of ash particles in volcanic plumes, which can help reduce the risks to human health and infrastructure. The camera, called AshCam, uses sunlight to identify ash particles and provides new insights into volcanic ash dynamics.
Researchers from Friedrich-Schiller-University Jena studied the correlation between tropical moth size and elevation, finding clear patterns in their measurements. Moths from two species-rich families increase significantly in size at higher elevations, contradicting expectations under the Bergmann rule.
A team of geoscientists studied the Taupo Volcanic Zone in New Zealand, finding that smaller eruptions reset magma chambers over decades to centuries. This understanding can aid predictions of similar eruptions and mitigate supereruptions.
Guilherme Gualda and his students studied magma storage-depth evolution in the Taupo Volcanic Zone. They found that magma moved closer to the surface with each successive eruption, likely preventing supereruptions. The dynamic nature of the crust allowed for frequent, smaller eruptions to occur, preventing a massive eruption.
Scientists have recorded horizontal and vertical movement of a submerged volcanic flank for the first time using a sound-based underwater geodetic monitoring network. The entire southeastern flank is in motion due to gravity, and a catastrophic collapse could trigger a major tsunami.
A long-term study reveals that microbes can remove up to 90% of emitted methane, but only after decades. The unique community on the Håkon Mosby mud volcano plays a crucial role in mitigating climate change.
Princeton University researchers have discovered a precise timeline for the Columbia River flood basalts, which they believe caused ancient global warming. The team's use of tiny zircon crystals has provided an unprecedented level of precision, revealing that 95% of the eruptions occurred within a 750,000-year window.
A new study on Ceres reveals that the dwarf planet's ice volcanoes generate an average of more than 13,000 cubic yards of cryovolcanic material each year. This amount is equivalent to filling a movie theater or four Olympic-sized swimming pools.
Researchers from the University of Bristol have developed autonomous sensor pods called 'dragon eggs' that can withstand harsh conditions around active volcanoes, providing valuable real-time data on volcanic activity. The innovative technology has numerous applications, including remote monitoring of glaciers and geological faults.
A study by University of Washington researchers has discovered a new clue to the behavior of a region in West Antarctica, where a volcano under the ice sheet is leaving an almost 6,000-year record of glacier motion. The data suggests that the current thickening trend may be short-term and not indicative of long-term changes.
Researchers used advanced imaging techniques to reveal a 20-30 mile diameter subsurface batholith, which diverted magma outside the Cascade Arc, forming Mount St. Helens. The study provides clearer insights into the volcano's formation and potential for future activity.
Electrically charged volcanic ash from the 1815 Mount Tambora eruption may have contributed to Napoleon's defeat at Waterloo by 'short-circuiting' the ionosphere. Heavy rain brought about by this ash led to muddy and rainy conditions that hindered the Allied army.
Researchers have found that volcanic eruptions cause different impacts on sea surface temperature (SST) gradients over the equatorial Pacific, depending on their latitude. Northern and tropical eruptions lead to El Nino-like warm SST anomalies in the eastern Pacific, while southern eruptions result in weaker warming anomalies with an e...
Researchers have dated the ancient Minoan eruption of Thera to between 1600 and 1525 BC using tree ring analysis, which overlaps with previously estimated dates from archeological evidence. This discovery resolves long-standing debates about the timing of the eruption.
Scientists discovered that gas bubbles rising to the surface can alter volcanic gas composition, which affects eruption forecasts. The findings also suggest a new pathway for chemical changes in gases during large-scale eruptions.
A new study by a Virginia Tech geoscientist reveals that the Yellowstone super-volcano was powered by a gigantic ancient oceanic plate, not heat from the Earth's core. This ancient plate broke into pieces, resulting in explosive volcanic eruptions over the past 16 million years.
Researchers found a common magma source connecting the two volcanoes, which led to changes in behavior before and after an eruption. The study provides new insights into volcano interactions and potential hazards in densely populated areas.
Researchers found that increased greenhouse gas emissions have led to a significant increase in noctilucent cloud formation and visibility. The study suggests that human-caused climate change is affecting the middle atmosphere and making these clouds more visible.
The lab provides datasets to support emergency response in Hawaii following volcanic eruptions, enabling quick identification of vulnerable structures. Researchers also develop super-stretchy polymers with self-healing abilities and create a scalable processing technique for 3D printing plant-based materials.
Scientists at University of Wisconsin-Madison used an innovative approach to study the Laguna del Maule volcanic complex in Chile, measuring average uplift of 8 inches per year. The team found that magma rising under the area is causing rapid uplift, but also has a potential impact on future eruptions.
Scientists at MIT have discovered nearly 80 new planetary candidates in the K2 dataset, including a likely planet that orbits HD 73344 every 15 days. The planet is estimated to be 2.5 times the size of Earth and 10 times as massive, with surface temperatures reaching 1,200-1,300 degrees Celsius.
A study found that a volcano's geometry impacts its sound waves, allowing scientists to better monitor activity and detect changes. Researchers believe listening to Kilauea's infrasound could help forecast potential eruptive hazards.