A new study finds that many Earth-like exoplanets with liquid water exist, increasing the chances of finding life. Researchers discovered two main ways for heat to generate liquid water underground, even in planets with frozen surfaces.
Researchers found large quantities of plastic mulch fragments in strawberry fields, negatively impacting soil qualities and microbial respiration. The study's findings suggest that biodegradable or natural mulches could be alternatives to reduce long-term plastic pollution.
A study by Caltech scientists reveals that Earth primarily consisted of dry, rocky materials during its early stages, with a major addition of life-essential volatiles occurring only in the last 15% of its formation. This finding provides crucial insights into the planet's formation process and has important implications for theories o...
A new study published in the Proceedings of the National Academy of Sciences confirms that the Megalodon shark was warm-blooded, with a body temperature estimated at around 27°C. This discovery provides empirical evidence for the extinct species' internal heat production, shedding light on its biology and ecological role.
A pioneering study using deep-sea corals reveals that ocean currents did not fuel the increase in atmospheric carbon dioxide over the past 11,000 years. The research suggests that biogeochemical cycles redistributing nutrients and carbon in the ocean and on land may have influenced this rise.
A new study by University of Arkansas researchers determines that hundreds of human skulls and mandibles at the Crenshaw site are local ancestors of the Caddo Nation. The findings use a novel dating technique to test lead and strontium isotopes in human teeth, revealing a multiregional pattern indicative of local ancestry.
Researchers found distinct differences in geochemistry and microbial community composition between flat-slab and back-arc hot springs. These findings suggest that tectonics play a crucial role in shaping the microbial makeup of these environments.
The study analyzed 45 copper objects from Northern Central Europe and Southern Scandinavia, revealing changes in distribution networks across prehistoric Europe. The findings suggest that copper artefacts originated primarily from southeast Europe before 3500 BC, with later sources including the Eastern Alps and British Isles.
Researchers used mercury isotope data to push back the timeline of vascular plant colonization, finding extensive land colonization by early Silurian (~444 Ma). This discovery links terrestrial organism expansion to co-evolution of earth systems, particularly atmosphere-ocean-weathering processes.
A recent study published in Nature Communications reveals that Earth's anisotropic inner core structure is driven by the dipole geomagnetic field. The researchers found that hexagonal-close-packed (hcp) Fe-H alloy exhibited both seismic anisotropy and H-ion diffusion anisotropy under high pressure-temperature conditions.
Recent GSA Bulletin articles investigate the formation of N-S trending mountain ranges in Tibet and the geochemical signature of a deeply subducted slab. The studies reveal insights into surface uplift and E-W extension, challenging common views on their initiation.
Researchers have overturned the traditional view that oxygen derives from water splitting, instead finding that reactive oxygen species (ROS) produced at mineral-water interfaces are a key source of oxygen. This discovery has significant implications for understanding the evolution of Earth's atmosphere and the habitability of early life.
Researchers found an increase in biologically available nitrogen during the time when marine eukaryotes became dominant, leading to a new era for life on Earth. This discovery links ancient ocean records to the present and beyond, providing context for global changes.
Researchers at Trinity College Dublin have synthesized cerianite, a rare earth mineral with antioxidant properties, using an environmentally friendly method. The study provides new insights into the occurrence and behavior of cerianite in natural deposits and expands knowledge on REE synthesis.
Researchers found that Waquoit Bay has shifted from a benthic to a pelagically-dominated ecosystem due to human causes, including excess nutrient pollution and climate change. The bay's ecosystem degradation has broader implications for estuaries worldwide.
Researchers have found that relatively oxidized fluids fed Earth's earliest hydrothermal systems, which may have supported prebiotic organic synthesis. The discovery provides new insights into the geochemistry of these ancient systems and their potential role in the emergence of life on Earth.
A new study uses paleoclimate data to predict the impact of future climate change on land and sea. Terrestrial amplification, where land warms faster than sea, is estimated to be 40% larger over continents than oceans.
This study by Prof. Yong-Fei Zheng examines the operation of plate tectonics, focusing on divergent-convergent coupling systems and their impact on material movement and energy transfer at plate margins. It highlights two key processes for the onset of plate tectonics: subduction initiation and lithospheric rifting.
Researchers found high ferric iron content in agglutinate glass from lunar soil returned by China's Chang'e-5 mission. The discovery challenges previous knowledge about lunar ferric iron and suggests ongoing charge disproportionation reactions, leading to progressively increasing ferric iron on the Moon's surface.
Researchers identified seven exotic igneous clasts in Chang'e-5 samples, providing critical information about the Moon's lithological diversity and regolith gardening process. The findings indicate that there are still unknown geological units on the moon, which may aid future lunar exploration missions.
The São Paulo School of Advanced Science on Nanotechnology, Agriculture and Environment will cover topics such as nanotechnology innovation, sustainability, and biological applications. The event will feature renowned scientists as speakers and provide hands-on experiments, technical visits, and didactic activities.
Researchers use coral vanadium data to document prehistoric changes in tropical cyclones and anthropogenic activities. The study found a close relationship between surface wind patterns and vanadium levels, suggesting a potential proxy for documenting past tropical cyclone events.
Researchers detected sub-microscopic magnetite and metallic iron particles in Chang'E-5 lunar soil through electron microanalysis. This discovery provides direct evidence for the formation of native magnetite in lunar samples and sheds light on the origin of Moon's magnetic anomalies.
An international research team proposes using engineered nanoparticles to fertilize ocean plankton, encouraging growth and carbon dioxide uptake. The approach has been shown to be safe and effective in enhancing plankton growth through controlled release of nutrients.
Researchers used advanced analytical techniques to identify characteristics indicative of a biological origin in the 3.48-billion-year-old Dresser Formation stromatolites. The study provides unique insights for searching life on Mars, where similar geological processes may preserve biosignatures.
These coals exhibit a papery, sheet-like nature when weathered, dominated by ribbon-like cutinites. Researchers found abundant n-alkanes, hopanes, and other organic compounds indicating pteridophytes as the main plant source.
A WWII shipwreck in the North Sea is leaking hazardous pollutants like explosives and heavy metals, influencing marine microbiology and geochemistry. The study found varying concentrations of toxic substances depending on distance from the wreck, with highest metal levels near the coal bunker.
A new study examines the impact of coral chemical compounds on reef composition and health, finding that they vary significantly by coral species. The research also discovers an invasive reef alga releasing high quantities of caffeine, which may contribute to its ability to invade and flourish on Caribbean reefs.
Researchers identify signs of an impact crater on the Iberian Peninsula for the first time, revealing a 4-kilometer-wide structure surrounded by 20-kilometer-large sedimentary collapse area. The discovery was made after 15 years of research involving international teams from Spain and Europe.
Researchers developed an open-source tool set to analyze river longitudinal profiles using Matlab scripts. The tool integrates functions for drainage basin calibration, channel steepness estimation, and paleo-channel profile projection, providing insights into tectonic activity and uplift rates.
Researchers analyzed 306-million-year-old fossilized animal feces and found biomolecular information about long-extinct diets. The study revealed that an unidentifiable extinct animal was a meat-eater or on a predominantly carnivorous diet, with high proportions of cholesterol-derived molecules and a lack of plant-derived biomarkers.
Researchers analyzed fossil corals to reveal changed ocean current circulation patterns. The data supports a scenario where the upper Pacific Ocean was more mixed during the last ice age, contributing to carbon storage and cooler climates.
Researchers identify three stages in convergent plate margin formation, from low-angle subduction to rifting zones. They also reveal the importance of material movement and thermal state changes in shaping these dynamic systems.
Researchers have categorized convergent plate margins into three stages based on geometric structure, dynamic regime, and thermal state. The transformation from subduction zones to rifting zones involves two steps: lithospheric thinning and asthenospheric upwelling.
A new study in Frontiers in Earth Science questions the link between climate change and ecosystem diversity during the origin of dinosaurs in Argentina. The researchers found that variations in species abundance cannot be explained by climatic changes, instead attributing it to preservation and sampling biases.
A 2000-year record reveals that climate change and human activities significantly impacted Atlantic salmon populations in the River Spey. The study uses a novel method to analyze nutrient levels, providing insights into historical population dynamics.
A joint research team has discovered ancient continental rocks at the Southwest Indian Ridge, dating back 2.7 billion years. The rocks' composition suggests they were recycled from the neighboring African continent through the asthenosphere, challenging current understanding of oceanic crust formation.
Researchers from the University of Gothenburg estimated that fjord emissions are comparable to global deep ocean methane emissions. Fjords produce high amounts of methane due to anoxic environments and mixing events during stormy weather.
A multidisciplinary project aims to develop a decision-making tool to estimate the risk of water contamination in flooded areas. The research team will collect public data and conduct field work to test their approach in small study areas, ultimately enabling Québec to reduce health risks by better protecting water quality.
Friedhelm von Blanckenburg's project DEVENDRA explores the weathering of basalt and carbonate rocks, measuring their transformation into soil and subsequent erosion. The goal is to establish a novel method for calibrating the laws governing weathering and CO2 drawdown.
Researchers found that around 3.8 billion years ago, a major transition in the geochemistry of zircons occurred, suggesting the onset of plate tectonics. This discovery provides hints about how the planet became habitable and under which conditions the earliest forms of life developed.
A new study published in AGU journal Geochemistry, Geophysics, Geosystems suggests that Earth formed inside a solar nebula. The research found that vast stores of helium-3 from the Big Bang are leaking out of the Earth's core, providing evidence for this theory.
A recent study found that COVID-19-derived plastic debris is contaminating marine ecosystems, with sea turtles being particularly affected. The research analyzed fecal samples from 76 sea turtles and detected the presence of face masks, which can leach endocrine-disrupting chemicals into the environment.
A recent study has identified soil erosion and wildfire activity as significant contributors to the mass extinction event that occurred at the end of the Triassic period. The research found that soil erosion was a more prominent terrestrial ecological stress than intensive wildfire activity, with fire events likely being localized rath...
Researchers used geochemical data from 225 hot springs to create a detailed map of the boundary between the Indian and Asian continental plates, revealing processes occurring deep below the surface. The findings suggest that an old theory about the flat position of the Indian plate beneath Tibet is no longer tenable.
Researchers have measured deformation of mineral davemaoite under conditions inside the Earth's mantle, finding it to be surprisingly soft. This discovery challenges previous ideas about subducting slabs in the lower mantle, suggesting a detachment of crust from the underlying plate can occur.
A new grant from HEI Energy will allow researchers to explore possible links between fracking and water contaminants in southwestern Pennsylvania. The team will examine over 7,000 water samples for 40 diverse chemical signatures to identify if contaminants originated from the fracking process or legacy resource extraction.
A team of Woods Hole Oceanographic Institution researchers discovered that nearly 10% of the oil floating on the Gulf of Mexico after the Deepwater Horizon spill was dissolved into seawater by sunlight. The process, called photo-dissolution, has significant implications for understanding the fate and potential toxicity of these compounds.
Researchers found that Earth's inner core is a mixture of solid iron sublattice and liquid-like light elements, known as superionic state. This discovery provides critical clues for understanding the softness and seismic velocities of the inner core.
A University of Washington team has discovered 349 methane gas plumes bubbling up from the seafloor in Puget Sound. The bubbles are likely connected to underlying geology and may be a natural source of methane, rather than human activity.
A new study by Curtin University has identified the twin mechanisms responsible for the end-Triassic mass extinction event, including ocean acidification and rising hydrogen sulfide levels. This research sheds light on the causes of past marine extinctions and provides valuable insights into the history of our planet.
Researchers studied sediment incorporation events in the North Cascades and Wrangell Arc, finding that metasedimentary rocks were incorporated into the arc during multiple events. The study used field relationships, geochronology, and geochemistry to understand the protolith incorporation history of these rocks.
A recent study analyzing air bubbles preserved in Antarctic ice for up to 1.5 million years suggests that glacial erosion is likely responsible for the decline of atmospheric oxygen levels over the past 800,000 years.
A new study published in ACS Environmental Au highlights the complexities of cleaning up burnt and unburnt nurdles spilled along Sri Lanka's coastline. The research proposes recommendations for the ongoing clean-up, including educating citizen scientists and revising response efforts to account for variability in spilled nurdles.
Researchers used stalagmites from Jiangjun cave in China to study the response of the Indian summer monsoon to meltwater pulses in the North Atlantic. The analysis revealed that a stronger meltwater pulse caused a drastic reduction in monsoon intensity, while minor events had less impact.
A team of scientists has identified a new force behind the past mass extinction event, finding that volcano eruptions produced a 'volcanic winter' that drastically lowered earth's temperatures. This change added to the environmental effects resulting from other phenomena at the time.
The discovery of a Roman arched aqueduct in Artaxata-Artashat in ancient Armenia provides evidence of the failure of Roman imperialism. The aqueduct, built between 114 and 117 CE, was never completed due to the relinquishment of the province by Emperor Hadrian after Trajan's death.
A new study reveals that marine microbes are able to consume more methane from sediments than anticipated, preventing its release into the ocean and subsequent environmental consequences. This discovery suggests that these microbes play a crucial role in suppressing methane emissions and mitigating the impacts of climate change.
The Toarcian Ocean Anoxic Event was found to have occurred in the eastern Tethys, displaying similar carbon-isotope excursion patterns to other regions. This suggests a global expression of the event, with climatic change controlling organic matter accumulation and sediment supply.
A study found that seabirds around the globe consume up to 52% of plastic, leading to accumulation of its chemical components in their bodies. Researchers analyzed oil from preen glands and stomach contents of bird carcasses to determine contaminant burdens.