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Search results for “Geochemistry”

639 results for "Geochemistry"

Earth formed from dry, rocky building blocks

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...

SourceCalifornia Institute of Technology·JournalScience Advances·DateJul 5, 2023

New geochemistry research confirms megalodon shark was warm-blooded

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.

SourceWilliam Paterson University·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJun 26, 2023

Remains at Crenshaw site are local, ancestors of Caddo, study finds

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.

SourceUniversity of Arkansas·JournalJournal of Archaeological Science·TypeExperimental study·DateJun 14, 2023

Copper artefacts reveal changing connections in prehistoric Europe

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.

SourcePLOS·JournalPLOS ONE·TypeObservational study·DateMay 10, 2023

Earth’s anisotropic inner core structure driven by dipole geomagnetic field: Study

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.

SourceChinese Academy of Sciences Headquarters·JournalNature Communications·DateMar 30, 2023

Scientists discover a novel origin of abiotic oxidants on early earth: minerals

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.

SourceChinese Academy of Sciences Headquarters·JournalProceedings of the National Academy of Sciences·DateMar 23, 2023

Excess nutrients lead to dramatic ecosystem changes in Cape Cod’s Waquoit Bay; the bay is a harbinger for estuaries worldwide, say researchers

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.

SourceWoods Hole Oceanographic Institution·JournalEstuaries and Coasts·TypeObservational study·DateFeb 21, 2023

Plate tectonics in the twenty-first century

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.

SourceScience China Press·JournalScience China Earth Sciences·DateJan 12, 2023

Study examines the impact of coral chemical compounds on reef composition and health

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.

SourceWoods Hole Oceanographic Institution·JournalISME Communications·TypeObservational study·DateOct 17, 2022

First probable impact crater discovered in Spain

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.

Study of 300-million-year-old feces finds meat on the menu

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.

SourceCurtin University·JournalBiology·TypeMeta-analysis·DateAug 30, 2022

New research questions hypotheses about climate-controlled ecosystem change during the origin of dinosaurs in Argentina

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.

SourceUniversity of Utah·JournalFrontiers in Earth Science·TypeObservational study·DateJun 13, 2022

Zircons (and the secrets they hold) are forever

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.

SourceHarvard University·JournalAGU Advances·TypeComputational simulation/modeling·DateApr 25, 2022

Study finds soil erosion and wildfire another nail in coffin for Triassic era

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...

SourceCurtin University·JournalEarth and Planetary Science Letters·TypeObservational study·DateMar 20, 2022

Dissolving oil in a sunlit sea

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.

SourceWoods Hole Oceanographic Institution·JournalScience Advances·TypeObservational study·DateFeb 16, 2022

Study outlines challenges to ongoing clean-up of burnt and unburnt nurdles along Sri Lanka’s coastline

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.

SourceWoods Hole Oceanographic Institution·JournalACS Environmental Au·TypeData/statistical analysis·DateNov 29, 2021