A new study reveals that increased meltwater in the North Atlantic can trigger hotter and drier European summers. The study suggests a predictable chain of events leading to European summer weather, due to higher levels of freshwater in the North Atlantic.
The American Geophysical Union (AGU) has announced the Ocean Sciences Meeting 2024, featuring panel discussions on climate interventions and ocean-based carbon dioxide removal. Researchers will also explore using shipwrecks to study changing coastlines and oceans.
A team of authors from the University of Hawaii at Manoa identifies gaps in programs aimed at increasing participation of Native Hawaiians and Pacific Islanders in ocean sciences. They highlight successful programs like the SOEST Maile Mentoring Bridge and The MEGA Lab, which prioritize culturally centered spaces and community involvem...
A new study estimates that living in flood-prone areas in Bangladesh is associated with an excess risk of infant mortality of 5.3 additional deaths per 1,000 births. The study found that children born during rainy months face a higher risk of death than those born in dry months.
Scientists discover new sulfur cycle mechanism in Lake Superior's ancient waters, highlighting the crucial role of organic sulfur compounds. The findings provide insight into how sulfur was cycled in Earth's oceans billions of years ago.
Researchers from the University of Plymouth discovered coral reef bleaching at depths previously thought to be resilient, highlighting the vulnerability of mesophotic coral ecosystems to thermal stress. The study suggests that climate change is causing a deepening of the thermocline, leading to increased bleaching in the deeper ocean.
The 2024 Ocean Sciences Meeting brings together 5,000 scientists to discuss breaking research and critical issues affecting ocean sustainability. The biennial event will feature an online-only scientific session on Wednesday 21 February.
Scientists have found evidence of past oxygen loss in the world's oceans during glacial periods, indicating that current climate change may not be permanent. The discovery was made by analyzing seafloor sediments from the past 145,000 years, which showed a build-up of cobalt during the last ice age.
A historic red tide event in 2020 was caused by an exceptionally dense bloom of Lingulodinium polyedra, a plankton species that can swim and outgrow its competitors, leading to harmful algal blooms. The study validated a 50-year-old hypothesis and highlighted the exceptional swimming ability of dinoflagellates.
A new study published by the University of Rhode Island's Graduate School of Oceanography reveals extensive microplastic storage in Narragansett Bay, with an estimated 1,000 tons stored in the top 5 cm of its floor. The buildup has occurred over the last 10-20 years, primarily due to littering and runoff of single-use plastic items.
Scientists measured coral calcification rates off Hawaiian Islands at depths of 230-360 feet, finding the lowest rates ever recorded for healthy corals. This is due to the efficient use of calcification by corals like Leptoseris spp., which form thin horizontal skeletons to maximize area in low-light zones.
A recent study found significant changes in ocean color over the past two decades, affecting 56% of the world's oceans. The shift in color indicates changes in marine ecosystems, with tropical regions becoming greener due to human-induced climate change.
Researchers have uncovered a previously unknown process in marine phytoplankton that accounts for between 7% to 25% of all oxygen produced and carbon fixed in the ocean. This discovery sheds light on how tiny organisms contribute to global oxygen production, with potential implications for our understanding of evolution.
A new study found that natural fibers degrade within a month, but synthetic textiles like bio-based plastics and fabric blends show no signs of degradation even after over a year. The experiment revealed the need for standardized tests to determine if materials are biodegradable in natural environments.
Researchers used a powerful supercomputer to analyze the 2019 Ridgecrest earthquakes, which showed how faults can interact across segments and cause unexpected interactions. The study's findings improve seismic hazard assessment and preparedness for complex earthquake systems.
Scientists tracked fertilized Nassau grouper eggs using an underwater microscope, finding that they stayed local in some years but drifted to nearby islands in others. The study reveals the importance of local reproduction and ocean currents in boosting populations and providing spillover benefits for neighboring islands.
Oceanographers warn of limitations in carbon dioxide removal, emphasizing the need for rapid emission cuts to limit global warming. Clear definitions of marine heatwaves are also crucial for coastal communities to adapt and resource managers to prioritize mitigation strategies.
Scripps Oceanography researchers developed a machine learning method to separate fish chorusing sounds from the overall ocean noise, enabling faster analysis and identification. The 'SoundScape Learning' technique can be applied to other soundscapes to learn more about animals like frogs, birds, and bats.
New research confirms that coastal water pollution transfers to the atmosphere in sea spray aerosol, contaminating air for people inland. Bacteria and chemicals from sewage-polluted Tijuana River are detected in ocean aerosols.
A study led by researchers from the University of Barcelona found that marine reserves are unlikely to restore food webs in marine ecosystems. The protection of fishing did not cause significant changes in trophic structure, but it favored the recovery of some species like the dusky grouper.
A University of Rhode Island professor's study has developed a macromolecular model of phytoplankton, which could have significant implications for climate research. The model predicts the variation in C:N:P ratios throughout the ocean, providing new insights into how phytoplankton respond to changing environmental conditions.
The UW Photonic Sensing Facility uses fiber-optic sensing technology to detect ground motions as small as 1 nanometer for seismology, glaciology, oceanography, and infrastructure monitoring. The new center will expand seismic data collection by thousands of times.
Researchers found that African lakes emit little CO2 but high amounts of methane, adding to greenhouse gas burden. Phytoplankton's warm conditions promote archaea production, leading to increased CH4 emissions.
A team of Chinese and U.S. scientists created the first global map of chronic oil slicks in oceans and found that more than 90 percent come from human sources. Most slicks occur near coastlines, with significant reductions in pollution around regulated offshore areas.
A newly installed deep-water pipeline has led to a significant increase in the abundance and diversity of marine life on the Angolan coast. The study found that the pipeline provided shelter and trapped organic matter, which animals feed on, resulting in an immediate boost to sea-floor animals.
Researchers discovered and validated the enzymes responsible for producing guanitoxin, a potent neurotoxin associated with freshwater harmful algal blooms. The study revealed that guanitoxin-producing cyanobacteria are more prevalent than known in the US, enabling new molecular diagnostic testing to protect public health.
Scientists have detected an increase in atmospheric helium levels, which is attributed to the release of helium as a by-product of fossil fuel combustion and extraction. This finding has significant implications for understanding industrial activity and the potential uses of rare helium isotopes.
Researchers have made the first detection of groundwater beneath an Antarctic ice stream, providing new insights into the region's hydrology. The study confirms what scientists had previously suspected but couldn't verify until now, improving our understanding of how the Antarctic ice sheet might affect sea levels.
Researchers developed a comprehensive regional diagnostic method using DNA testing, allowing for precise identification of microorganisms and estimation of their abundance. The technique has the potential to revolutionize our understanding of the ocean's food web and its role in removing greenhouse gases.
A Scripps Oceanography-led study predicts that climate change is making surface ocean currents faster and thinner, affecting global nutrient transport and carbon removal. This change can have a ripple effect on the ocean's ability to remove heat from the atmosphere.
Researchers at UC San Diego's Scripps Institution of Oceanography discovered the enzyme-driven process that activates the anticancer molecule salinosporamide A. The team found that a single enzyme called SalC assembles the warhead, which is responsible for the molecule's anti-cancer properties.
Researchers at UC San Diego have discovered a novel molecular process in corals that controls the subcellular environment of symbiotic algae. The study provides new understanding of the ecologically important animal-microbe relationship, with potential implications for coral health and disease.
A recent study found that rainfall significantly affects the abundance of Vibrio vulnificus in the Ala Wai Canal, with moderate rainfall leading to high concentrations of the bacterium. The researchers suggest that while exposure is still a risk, precautions such as washing off with soap and water can minimize the danger.
A team of researchers found that many marine phytoplankton are voracious predators, consuming bacteria like Prochlorococcus and other primary production. This discovery reveals the complexity of ocean ecosystems and challenges traditional views of phytoplankton as solely photosynthetic organisms.
Researchers have discovered two new and unusual species of diatoms that fix nitrogen, a critical process supporting productivity in nutrient-poor open ocean waters. These diatoms harbor symbiotic cyanobacteria that convert dissolved nitrogen gas into ammonia, enabling them to thrive in nutrient-poor conditions.
A new study analyzes three decades of radar data to build a catalogue of rainbands, helping scientists create storm prediction algorithms. The researchers found that 60% of events resulted in at least one National Weather Service warning, with some associated with atmospheric rivers.
A study published by UC San Diego researchers found that heat waves significantly increase emergency room visits among people experiencing homelessness. The study highlights the need for heat action plans to protect vulnerable populations from extreme weather conditions.
Scientists have detected a significant acceleration of the Antarctic Circumpolar Current (ACC), the only ocean current that circumnavigates the planet. The study found that climate change is causing the ACC to speed up, with prevailing westerly winds energizing ocean eddies and facilitating property exchange between ocean basins.
A team of researchers at the University of Rhode Island found that different types of phytoplankton respond differently to warming ocean temperatures. The study suggests that their growth rates and distribution patterns will be dissimilar, resulting in significant implications for future marine communities.
A Cornell-University of South Carolina-led report warns that warming oceans are driving North Atlantic right whales towards extinction. The calving rate has declined by 26% since 2010, with the population now estimated at just 356 whales.
Salps, small gelatinous organisms, are competing with protists for food in the ocean, rather than krill. This shift in understanding changes the ecosystem's carbon sequestration and food availability.
Researchers confirm that fine particles in wildfire smoke can be several times more harmful to human respiratory health than particulate matter from car exhaust and other sources. The study, focused on Southern California, highlights the risks of tiny airborne particles with diameters of up to 2.5 microns.
A new study analyzes biological drivers of multiple paternity in sharks and rays, finding no conclusive evidence that male behavior drives the phenomenon. The researchers suggest that female advantages, such as thicker skin and larger size, may play a role in shaping multiple paternity.
Researchers have discovered that soupfin sharks undergo a triennial migratory cycle and reproductive cycle, returning to the same location every three years. This finding has significant implications for conservation and management of the species in U.S. waters, highlighting the need for revised management strategies.
A new study by Scripps scientists reveals that mountain snowpack is vulnerable to premature melt due to rising temperatures, with coastal regions and the Arctic being the most at-risk. The research identifies regional variations in snowpack melt and provides a theory explaining why some regions are more susceptible than others.
Researchers discovered that microbes in ancient sediment below the seafloor are sustained primarily by chemicals created through the natural irradiation of water molecules. This radiation-fueled ecosystem is one of Earth's largest and has significant implications for understanding life on Mars.
Cold-water coral reefs in the Western Mediterranean have been growing almost continuously for 400,000 years, with major climate swings controlling their development. The study reveals that intense monsoon events also had a detrimental impact on these reefs.
Researchers have broken down the genomic and life history traits of three classes of RNA viruses, identifying natural products that could disrupt their spread. The study highlights potential treatment strategies, including the use of compounds produced by marine and terrestrial organisms with demonstrated antiviral activity.
A three-year study in Del Mar, California has uncovered the relationship between wave impacts and coastal cliff erosion, with waves affecting the base of cliffs and rain impacting the upper region. The findings provide a new opportunity to improve forecasts and predict cliff retreat.
A new study provides the first-of-its-kind model for how massive icebergs from Antarctica decay and affect ocean currents. The research found that these icebergs deliver freshwater to the Southern Ocean, influencing climate patterns.
A new study by MIT researchers reveals that Arctic eddies are driven by ice friction and ocean stratification, leading to a seasonal shift in their activity. The findings suggest that as the Arctic loses summertime ice, waters will become more turbulent, with implications for climate change predictions.
A new study from Scripps Institution of Oceanography at UC San Diego and the University of Chicago sheds light on the hotly contested debate of when plate subduction began. The research suggests that this process started around 3.75 billion years ago, reshaping Earth's surface and setting the stage for life.
The BIOS-SCOPE program will continue its research into the microbial ecology of the Sargasso Sea, leveraging over 30 years of data from BATS and other sources. The program brings together researchers from different backgrounds using systems biology, genomics, and marine chemistry to study organic matter cycling and microbial interactions.
A team of researchers from the University of Rhode Island discovered single-celled microorganisms living in sediments at 120 degrees Celsius, where they didn't expect to find them. The study found evidence of metabolism and temperature regimes that make these environments habitable.
Dr. Ed Fry, a distinguished professor at Texas A&M University, received the 2020 Nils Gunnar Jerlov Award for his contributions to understanding light scattering and optical absorption of water. The award recognizes his innovative research in ocean optics.
A recent report by the Journal of Operational Oceanography reveals an unprecedented rise in sea temperatures worldwide, with the Arctic Ocean experiencing the largest increase. The report highlights the impact of climate change on ocean ecosystems and calls for improved monitoring to ensure sustainable use of seas and oceans.
The University of Oklahoma is leading a $100 million NSF AI Institute to advance trustworthy AI in weather, climate, and coastal oceanography. Researchers will develop accurate predictions and improve societal resilience to climate change.
A recent study published in Nature Communications found that the mass of microplastics in the upper waters of the Atlantic Ocean is approximately 12-21 million tonnes. This figure surpasses previous estimates and suggests a substantial underestimation of plastic waste entering the ocean over the past 65 years.
Jun-Hong Liang, an LSU associate professor, has received a five-year NSF CAREER award to support his research on ocean bubbles and their impact on upper ocean dynamics and air-sea gas exchange. The award will enable him to develop high-resolution simulations and physics-based formulas to calculate air-sea gas flux, ultimately improving...
A team of international scientists has developed over 200 new genetic techniques for using marine microbes, overcoming a bottleneck in microbial oceanography. The tools enable researchers to study the cellular instructions that underpin microbial life and potentially harness beneficial applications.