Dr. Steven M. Stanley receives the GSA Penrose Medal for his work on the punctuational model of evolution and its application to fossil data. His contributions focus on major climate change, seawater chemistry changes, and patterns of large-scale evolution and extinction.
The Geological Society of America recognized Steven M. Stanley, Richard W. Carlson, and Naomi E. Levin for their groundbreaking research in geology and earth sciences at the 2013 Annual Meeting & Exposition. The winners received prestigious medals, including the Penrose Medal and the Young Scientist Award.
The journal Geology has published new articles on various geoscience topics, including the tracking of silicic magma reservoirs and thermal decomposition along natural carbonate faults during earthquakes. The studies provide valuable information about the chemical and thermal histories of magmatic systems.
Scientists have discovered that large-scale upwelling in the Earth's mantle is mostly concentrated beneath Africa and the Central Pacific, with these locations remaining remarkably stable over geological time. This discovery provides a framework for understanding how mantle dynamics are linked to surface geology.
Researchers investigate strain localization, atmospheric CO2, and ultra-high pressure metamorphism, shedding light on geological phenomena. Intensified Southern Hemisphere Westerlies are found to regulate atmospheric CO2 during the last deglaciation, highlighting critical parameters for the global carbon cycle.
Six new papers in Geosphere explore the geology of North America, focusing on the Colorado River sediment budget and its link to uplift and erosion. The papers also examine the magmatism, ash-flow tuffs, and calderas of the western Nevada volcanic field, shedding light on ignimbrite chronology and caldera formation.
Researchers at the University of Pittsburgh have discovered evidence of prehistoric copper mining leading to high levels of lead pollution in northern Michigan lakes. The study reveals that human activities contributing to environmental lead pollution began as early as 8,000 years ago.
Studies reveal CO2 gas following seismic swarms, growth of Mount Everest, and remarkably modern Cretaceous seawater composition. Loess paleosol sequences in central Europe provide insights into the progressive evolution of a continental climate during the Middle Pleistocene.
Researchers identify two gemstones linked to plate tectonics, including ruby and jadeite. Ocean island coral reefs are shaped by sea-level history and carbonate accumulation rates.
Geologists at Indiana University studied the 'Eternal Flame' in Erie County, N.Y., which may feature high concentrations of ethane and propane. The researchers identified natural gas seeps in the region, suggesting they could contribute to atmospheric concentrations of greenhouse gases.
Researchers explore ancient iron oceans, Antarctic climate feedbacks and evidence of catastrophic spillover from Mars. High-resolution imagery reveals standing bodies of water in eastern Valles Marineris region of Mars.
Researchers investigate how surface-derived fluids can penetrate deep levels in Earth's crust, a challenge to widely accepted notions. They also explore the kill mechanism for a mass extinction event and the formation of hydrothermal base metal ore deposits. Additional studies focus on polar reversals, earthquakes, and archeological fi...
A study by University of Utah researchers found that superstorm Sandy caused significant seismic activity along the East Coast as well as in the Atlantic Ocean. The storm's 'standing waves' created energy at the seafloor, detectable by seismometers across the US.
Carnegie scientists found that plant communities are stronger predictors of ecosystem chemistry than environmental conditions. The study used a new airborne instrument to map multiple ecosystem chemicals and found that plant composition explains up to 61% of variation in plant chemical traits.
A team of scientists and technicians led by Rice University is conducting a 45-day expedition in the North Atlantic to gather detailed information about the geology of the ocean basin. The $6 million project aims to study the Galicia rift, where sediment has not deeply buried formations that have existed at the bottom of the ocean for ...
Researchers at the University of Leeds found a compound called pyrophosphite, which is similar to ATP and could have acted as an earlier form of energy transfer. This discovery suggests that chemical life could be the missing link between geology and biology.
The article discusses various geology topics, including the use of ancient lava-fed deltas to estimate paleo-water levels and past ice thicknesses. It also explores the formation of bubbles in volcanic conduits and the presence of iron-silicate microgranules in banded iron formations.
A new study links a magnitude 5.7 earthquake in central Oklahoma to wastewater injection, destroying homes and causing widespread damage. The researchers found that the pressure increase triggered by wastewater injection led to the largest earthquake ever recorded in Oklahoma.
Researchers uncover analogous cratering patterns at the Ries Impact Crater and Mars, while also analyzing camelopard-like camouflage in trilobites. The study of Hydrate Ridge and the Sahara Desert reveals insights into volcanic unrest and paleoweather conditions.
Studies reveal ancient ocean diamonds, soil depletion drives early Holocene lake acidification, and modeling world's largest rivers to understand their diversity. Insects' colorful evolution also sheds light on environmental factors.
This study investigates the sedimentary fingerprint of the 2011 Mississippi River flood across the Louisiana coast, identifying key indicators of sediment provenance. Chemostratigraphy also reveals a complete Late Permian to Early Triassic sequence in western Utah, shedding light on the Permian-Triassic mass extinction event.
A study by the University of Oregon found that large landslides in the past created broad, flat valleys with multiple auxiliary channels, providing a calm and safe haven for coho salmon during heavy rainstorms. This discovery provides fundamental insights into the geological and ecological controls on salmon habitat.
Researchers analyzed lake sediment to reconstruct climate patterns in Nicaragua during the Medieval Climate Anomaly and Little Ice Age. The study found that factors currently producing drier climates resulted in wetter conditions a few hundred years ago.
A new analysis of vegetation change over 12 million years reveals that grasslands dominated the landscape, challenging the idea of bipedalism as a response to forest encroachment. The study provides insights into the environment and plant life in Africa's Rift Valley during human evolution.
The article discusses various geological topics, including the flatness of Earth, chemical weathering, and the distribution of radiogenic lead in zircons. The findings show that mountains do not play a significant role in 'carbon drawdown' effect and challenge previous studies.
A recent University of Pennsylvania study published in Geology has challenged the long-held assumption that mountains play a significant role in regulating the Earth's climate. The research found that mountains contribute only a small amount of sediment to the world's oceans, and instead, gently sloping land areas are major contributors.
GEOLOGY articles reveal high-resolution images of Mercury's surface, further study of giant gypsum crystals in Naica Cave, and the provenance of North Atlantic ice-rafted debris. The publication also covers various geophysical studies, including the impact of the Galápagos hotspot on the East Pacific Rise.
GEOMAR researchers have found evidence that climate change can trigger volcanic eruptions on a global scale. They discovered a pattern where periods of high volcanic activity followed rapid global temperature increases and associated ice melting. This discovery could provide new insights into the Earth's natural climate cycles.
Seven University of Minnesota faculty members have been named AAAS Fellows for their groundbreaking research and innovative efforts in science. They were recognized in four different sections, including geology, physics, pharmaceutical sciences, and biological sciences.
The North China Craton's thin lithosphere and signs of thermo-tectonic reactivation challenge the traditional view of a stable cratonic lithosphere. The concept of 'craton destruction' has been widely accepted, influencing understanding of intraplate magmatism and continental evolution.
The Geological Society of America's GEOLOGY journal has posted 35 new studies online, covering various disciplines such as volcanology and paleoclimatology. These studies explore topics like super-eruptions, vegetation change, and geochemical asymmetry in hotspot volcanoes.
Researchers have discovered six major earthquakes above 7 magnitude on the Alhama de Murcia fault, revealing 'convincing evidence' of higher maximum earthquake magnitudes than previously thought. The study provides a detailed paleoseismic record of the fault's activity over hundreds of thousands of years.
The Geological Society of America has organized a break-out discussion panel to address the devastating effects of Hurricane Sandy on rapid sea-level rise and its impacts. Geoscience experts will discuss the changes caused by the storm to the U.S. East Coast, tying into scheduled presentations on the topic.
This new field guide delves into the geological history of the southeastern United States, spanning from the Triassic to the Precambrian period. The guide offers in-depth excursions along various regions, including coastal plains, highlands, and fault systems.
Two new studies provide insights into the formation of the European Alps and ancient sanukitoids. Reconstructing pre-glacial topography reveals most glacial erosion occurred in lower parts of the Alpine catchments, while aseismic creep has begun on major strike-slip faults like the North Anatolian Fault.
A new model provides insight into the brief but violent lives of monogenetic volcanoes, shedding light on their explosive mechanisms. The research proposes that explosions occur simultaneously over a range of depths, contradicting previous theories.
A recent study reveals Ottawa's unique geology amplifies seismic waves, exceeding expected National Building Code of Canada values. The area has experienced moderate shaking from earthquakes, but some areas have higher ground motion than others during larger events.
The study on the South Tibetan fault system reveals a minimum displacement of approx. 65 km, suggesting normal faulting played a fundamental role in the Himalayas' evolution. Meanwhile, researchers have discovered glaciation records in the James Bay Lowland, Canada, dating back to 3.5 Ma.
A new study explores the largest kill-off in Earth history, shedding light on the competing roles of tectonics and climate in shaping landscapes. Researchers also investigate the early diagenesis of sulfur in a tropical upwelling system and uncover the origins of belemnites, a group of Mesozoic cephalopods.
Researchers investigate debris flow impacts on alpine denudation rates and find that large events can significantly perturb cosmogenic denudation rates. Mid-Pacific microatolls provide a record of sea-level stability over the past 5000 years, indicating minimal oscillations in recent millennia.
Researchers track changing aridity patterns across the Northern Hemisphere using fossil mammal data, while also studying a change in volcanic behavior at Pisciarelli, Italy. In the Atacama Desert, they discover new barrier islands and explore periglacial weathering mechanisms.
Researchers have discovered evidence of catastrophic events causing rock pulverization near major faults in California and Japan, while coral reefs at high latitudes and turbid inner bays provide insights into environmental gradients. Continental collisions are also explored through the study of Taiwan's pre-collision zone.
Researchers at Kansas State University are studying the geochemical effectiveness of trapping and storing carbon dioxide in the Arbuckle aquifer, a porous rock layer that could permanently store CO2. The study aims to understand how to sequester carbon dioxide and keep it from reaching the atmosphere.
Researchers at the University of Pittsburgh have discovered an unexpected complexity in the patterns of drought during the Middle Ages. The study uses tree rings and oxygen isotopes to reveal that winters were wetter-than-expected during the Medieval Climate Anomaly, contradicting previous tree ring data.
Researchers study tectonic tilting in the Bahamas and its implications for hydrocarbon reservoirs. A new study demonstrates interhemispheric climate asynchrony during the Holocene era.
A continent-wide assessment of Antarctica's biogeography proposes dividing the landmass into 15 distinct conservation regions to safeguard native species. The 15 identified areas will serve as a basis for biosecurity measures to prevent invasive species transfer.
Researchers have discovered that Mars' interior contains more water than previously thought, with implications for the planet's geological history. Additionally, a study of ancient stromatolites suggests that reef-building may have occurred earlier than previously believed, challenging current models of ecosystem development.
Researchers have made groundbreaking discoveries about ancient geological events. Green rust formations were found in Indonesia, while historical sulfide concentrations were reconstructed in the Black Sea using molybdenum isotopes, providing new insights into past environmental conditions.
Researchers at the University of Leicester have discovered a method to safely remove gold plating from fossils without damaging them. This innovative technique uses industrial electro-plating and polishing methods with liquid salts called 'ionic liquids', which are environmentally friendly and cost-effective.
Researchers studied geological formations across the globe, including the Coast Range basalt province and the Faroe Islands. They discovered evidence of plume-influenced magmatism and fault rock types that can help model fluid migration and distribution. Additionally, a study on the Wairarapa fault in New Zealand investigated the geome...
Researchers analyzed sedimentary and geochemical records from Rantin Lake to reconstruct past water-level changes and understand the timing and magnitude of prehistoric climate events. The study found that rapid climate change events occurred during the Holocene, with a notable 'megadrought' in the early period.
A University of Georgia study analyzed over 46,000 fossils from 52 sites, revealing that abundant species did not necessarily persist longer than less abundant ones outside of the Ordovician extinction event. Instead, rarer genera were more likely to be present longer in the fossil record.
Researchers uncover ancient deformation ages of the Dead Sea fault zone, linking them to climate change in Northern Hemisphere. In southern Patagonia, warming caused glaciers to retreat early, while microbes played a key role in ooid formation.
Researchers in The Journal of Geology found that plain ocean waves, aided by strong storms, can move giant boulders inland. By comparing old maps to modern photos, the team showed that sections of the ridges have moved significantly since 1839.
Researchers discovered chemical footprints of mycorrhizal fungi in a 503-million-year-old soil, suggesting early land plants formed partnerships with fungus to extract nutrients. The study also found evidence of submarine canyons and the growth of sub-tropical forests in Europe, crucial for ape evolution.
Researchers used gravity and seismic geophysical methods to study the San Juan volcanic field in Colorado, revealing new constraints on its development. In Alaska, subducting plate geology was studied during three great earthquake ruptures, providing insights into tsunamis and future earthquake hazards.
Research found that ammonites made homes in unique environments surrounding methane seeps, forming integral part of interwoven communities. Isotope analysis revealed that these ancient mollusks spent their whole lives in these ecosystems.
Scientists investigate constant lower crustal temperatures and variable water contents in mafic melts from the SW Japan arc, linking magmatic water to differentiation of arc magmas. High-resolution carbon-14 dating reveals lamination rates influenced by climate and lake geochemistry in ancient stromatolites. Methane seeps are found as ...
Researchers explore the geology of Mars, including widespread weathered glass, global aqueous history, and volcanic activity. Studies also examine the impact of human activities on river discharge, crustal anatexis, and electrical conductivity in the Yellowstone hotspot.
Researchers found evidence of glacier sensitivity to rising temperatures and a massive body of sand in the North Sea large enough to cover London. They also uncovered the oldest evidence of animals burrowing for food, which coincides with the earliest ecological differentiation of macroscopic communities.