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Search results for “Mineralogy”

219 results for "Mineralogy"

Extreme aridity in the hyperarid core of the Atacama Desert began around 45 million years ago

A new study reveals that the Atacama Desert's hyperarid core became arid 45 million years ago, contradicting previous assumptions. The research team used cosmogenic nuclide dating to analyze quartz clasts and found exceptionally high concentrations of rare isotopes, indicating that surface clasts remained undisturbed for tens of millio...

SourceUniversity of Cologne·JournalNature Communications·DateJun 5, 2026

Calcium isotopic evidence for secondary carbonate precipitation in a large river catchment, Southeastern Tibetan Plateau

Researchers investigated the geochemical behavior of calcium isotopes during carbonate weathering in the Lancang River. The study found that dissolved Ca showed variations of δ44/40Ca values along the river flow, with suspended sediments enriched in light Ca isotopes controlled by mineralogy.

SourceScience China Press·JournalScience China Earth Sciences·TypeObservational study·DateDec 4, 2025

Researchers discover latitude- and regolith-dependent distribution of lunar surface water

A research team from the Chinese Academy of Sciences found that lunar surface water has a global source in the solar wind, with its distribution mainly controlled by latitude and regolith maturity. The study used samples from China's Chang'e-6 mission and NASA's Apollo missions to analyze the abundance and origin of lunar surface water.

SourceChinese Academy of Sciences Headquarters·JournalNature Geoscience·DateNov 6, 2025

Wits launches the Earth Observatory and CORES

The University of the Witwatersrand has launched the Earth Observatory and CORES, aiming to drive innovation in the minerals sector. The observatory provides cutting-edge geoanalytical techniques, while CORES integrates economic geology, extractive processes, and data-driven innovation to promote sustainable mining practices.

SourceUniversity of the Witwatersrand·TypeNews article·DateNov 5, 2025

Collaboration between academic research and business to better grasp environmental issues relating to the uranium mining cycle

The M-Cube associated research laboratory combines micron-level visualization tools with precise mineralogical and geochemical analyses to identify new avenues for optimizing the mining cycle. The collaboration aims to reduce the environmental impact of uranium mining sites and better understand the mobility of radioactive descendants.

SourceCNRS·TypeExperimental study·DateOct 8, 2025

Why did Neanderthals go to the beach?

The study of Neanderthal footprints offers a unique window into everyday behaviour, providing insight into their physical presence, locomotion strategies, diet and social structure. The research suggests that Neanderthals were more versatile and ecologically adapted to coastal environments than previously believed.

SourceUniversity of Seville·JournalScientific Reports·DateSep 25, 2025

What ever-growing incisors can teach us about genetic disease

Researchers use a combination of materials science and human genetics to map out the properties of enamel and dentin development in mouse incisors. Their methodology has the potential to provide new insights into identifying and treating rare craniofacial diseases and common dental cavities.

SourceUniversity of Pennsylvania School of Engineering and Applied Science·JournalACS Applied Materials & Interfaces·TypeObservational study·DateJul 17, 2025

Halogens reveal the secrets of the lunar crust

Researchers have discovered that rocks from the Earth-facing side of the Moon contain a surprisingly high amount of chlorine, suggesting volcanic eruptions may be responsible for its distribution. This finding provides new clues about the Moon's origin and evolution, including the formation and chemical changes of its crust.

SourceUniversity of Münster·JournalNature Communications·TypeExperimental study·DateJun 24, 2025

Record-breaking recovery of rocks that originated in Earth’s mantle could reveal secrets of planet’s history

An international team has recovered a nearly continuous 1,268-metre-long section of rocks that originated in the Earth's mantle, providing insights into the role of the mantle in the origins of life on Earth, volcanic activity, and global cycles. The study also reveals new information about how magma is formed and feeds volcanoes.

SourceWoods Hole Oceanographic Institution·JournalScience·TypeObservational study·DateAug 8, 2024

Record-breaking 1.2-kilometer drill core unveils new insights into Earth's mantle

A nearly continuous 1268-meter-long drill core of serpentinized abyssal mantle peridotite has provided new insights into Earth's deep geology and the potential biogeochemical conditions involved in the origins of life. The findings reveal significant mineralogical variations, including low pyroxene content and oblique melt migration.

Super Radar: Breakthrough radar research overcomes a nearly century-old trade-off between wavelength and distance resolution

Researchers from Chapman University and other institutions developed a new interference radar function that improves distance resolution between objects using radar waves. The technology breaks the trade-off between resolution and wavelength, allowing for high spatial resolution with long wavelengths.

SourceChapman University·JournalPhysical Review Letters·TypeExperimental study·DateAug 2, 2023

Cobalt mineralogy at the Iron Creek deposit, Idaho cobalt belt, USA: Implications for domestic critical mineral production

A new study published in Geology evaluates the potential for domestic cobalt extraction from the Idaho Cobalt Belt, which hosts the second largest known domestic resource of critical mineral cobalt. The researchers conclude that the ore from Idaho should be divided and processed for copper and cobalt separately to meet growing demand.

SourceGeological Society of America·JournalGeology·DateJun 6, 2023

X-ray analysis identifies mystery ancient marine reptile from Svalbard

A previously unidentified marine reptile fossil from Svalbard has been classified using X-ray analysis, providing unique insights into ancient life in the Norwegian archipelago. The study's findings suggest that fossils from this formation are particularly well-suited for radiographic imaging due to the presence of sulfur minerals.

SourcePLOS·JournalPLOS ONE·TypeObservational study·DateMay 31, 2023

Lightning strike creates phosphorus material for the first time on Earth

A team of scientists, led by University of South Florida professor Matthew Pasek, discovered a new phosphorus material in a fulgurite created by a lightning strike. The material is transitional between space minerals and those found on Earth, and its formation could have implications for our understanding of high-energy events.

SourceUniversity of South Florida·JournalNature Communications·TypeObservational study·DateApr 11, 2023

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

New study shows increase in black lung disease in coal miners

A new study has found higher levels of silica dust in the lung tissue of contemporary coal miners compared to previous generations, providing a rationale for the Mine Safety and Health Administration to develop a more protective occupational standard for silica. The study suggests that changing mining practices, which generated more si...

SourceAmerican Thoracic Society·JournalAnnals of the American Thoracic Society·TypeSystematic review·DateApr 14, 2022

The oxidation of volcanoes — a magma opus

A new Yale-led study reveals that arc magmas have a higher oxidation state than rocks in most of the Earth's mantle. The research proposes that this is due to hot, water-rich fluids rising through an oxidized sediment layer, producing oxidized magmas that can ultimately erupt as lava from volcanoes.

SourceYale University·JournalNature Geoscience·DateMar 17, 2022

Scientists develop new thermofluidic process for lab-on-a-chip applications

Researchers have created a new method to generate strong fluid flows in tiny channels by heating a metal film with a laser beam, allowing for the separation and transport of nano-objects. This innovation has potential for lab-on-a-chip applications and could lead to advancements in nanoscale manufacturing and sensor technologies.

SourceUniversität Leipzig·JournalNature Communications·TypeExperimental study·DateFeb 9, 2022

Thawing permafrost can accelerate global warming

A study found that thawing permafrost in the Arctic releases large amounts of previously unaccounted-for carbon dioxide, amplifying global warming. The research team determined that up to 80% of this CO2 comes from ancient organic matter and 18% from inorganic sources.

SourceUniversity of Cologne·JournalFrontiers in Earth Science·TypeExperimental study·DateJan 28, 2022

Reading between the diamonds

Researchers used lab tools to mimic extreme conditions, redefining the conditions under which carbonates can exist in the Earth's lower mantle. The study expands our understanding of the deep carbon cycle and the Earth's evolution.

SourceMichigan State University·JournalNature Communications·DateMar 24, 2021

Is there life on Mars today and where?

Dr. Nathalie Cabrol proposes that modern life on Mars could be more widespread and accessible than previously believed, and that understanding patterns resulting from extreme environmental interactions is key to finding life. She suggests taking the approach of Mars as a biosphere to find signs of microbial habitability.

SourceSETI Institute·JournalNature Astronomy·DateMar 16, 2021

A new, clearer insight into Earth's hidden crystals

Scientists have discovered that the high silica content in ancient rocks formed in the Earth's mantle is linked to a significant change in the planet's interior around 2.5 billion years ago. This boundary may have been caused by changes in the mantle's flow, leading to the loss of extremely high temperatures.

SourceTrinity College Dublin·JournalNature Communications·DateFeb 17, 2021

Diamonds need voltage

Researchers have found that tiny diamonds can form in the presence of small electric fields, which play a central role in their creation. The experiments conducted by the Russian research team showed that applying less than one volt triggers a chemical transformation process, resulting in pure carbon in the form of diamond.

Scientists discover a new mineral

Researchers at St Petersburg State University have discovered a new mineral called petrovite with unique properties that make it promising for use in sodium ion batteries. The mineral's structural type is suitable for ionic conductivity, which could lead to the development of more efficient cathode materials.

SourceSt. Petersburg State University·JournalMineralogical Magazine·DateNov 16, 2020