A new study reveals that ocean acidification is negatively affecting diatoms, a key group of microscopic marine organisms responsible for 40% of ocean productivity. The loss of silica production and sinking ability could lead to reduced atmospheric CO2 removal and storage in the deep ocean.
Researchers found that a dramatic increase in North Atlantic salinity caused the Arctic-Atlantic gateway to close, preventing ocean-sinking and kickstarting the modern circulation. The study suggests that changes in the Atlantic conveyor belt could dramatically alter Europe's climate in a future warm world.
Researchers have isolated over 40 different bacteria isolates that can tolerate ocean-level salt content, including Halomonas and Bacillus, which stimulate plant growth in high-saline conditions.
A new study has found that Atlantic coccolithophores are surprisingly scarce in fertile equatorial waters, despite being abundant in subpolar and temperate regions. This discovery sheds light on the inner workings of the ocean carbon cycle and raises questions about the impact of coccolithophore populations on global productivity.
A new study published in Nature Climate Change offers a roadmap for detecting changes in the ocean due to climate change. The research found that sea temperature rise and ocean acidification have already emerged, while other impacts such as changes in ocean microbes will take several decades to a century to appear.
New research found that Antarctic icebergs can weaken and delay the effect of Global Warming in the Southern Hemisphere. The study suggests that icebergs persist for years, cooling ocean waters and impacting currents by lowering ocean salinity.
Scientists have discovered that ionic thermal up-diffusion can significantly improve the efficiency of nanofluidic salinity gradient energy harvesting by promoting selectivity and suppressing ion concentration polarization. This innovative approach enables the creation of tunable ionic voltage sources, leading to enhanced power output.
A new study by the University of California, Davis, reveals that climate change could lead to a significant decline in oyster habitats in California bays. The research found that changes in dissolved oxygen levels, water temperature, and salinity would have a greater impact on oyster growth than ocean acidification.
A University of Maryland Center for Environmental Science-led research cruise is exploring the marine carbon cycle in the deep Atlantic Ocean. Scientists are analyzing bacterial diversity and function to better understand how cyanobacteria contribute to the process.
A record-breaking South American drought and marine heatwave in 2013/14 were caused by strong atmospheric convection over the Indian Ocean. The event displaced normal atmospheric circulation over South America, leading to extreme weather conditions and severe impacts on agriculture, public health, and fisheries.
A global evolutionary regime shift around 170 million years ago changed the success of organisms living in the ocean. Biological factors such as predator-prey relationships became increasingly important after the emergence of calcium carbonate-secreting plankton, stabilizing ocean chemistry and enabling diverse marine life.
The Exploring Ocean Worlds project aims to determine the potential of ocean worlds to harbor life, focusing on Europa and Enceladus. A new Network for Ocean Worlds will facilitate nationwide research coordination.
Research found that ocean water exposure can alter the diversity and composition of human skin microbiome, leaving individuals more susceptible to infections. Vibrio species were detected on every participant after swimming, with a significant affinity for attachment to human skin.
Researchers at Stanford University discovered an aquatic highway that lets nutrients from Earth's belly reach surface waters off Antarctica, stimulating explosive growth of microscopic ocean algae. Hydrothermal vents may affect life near the ocean's surface and global carbon cycle more than previously thought.
Dr. Lindstrom's leadership in combining space and in-situ systems has facilitated large ocean field campaigns, while fostering international collaborations to study the ocean's role in the global climate system. He has also supported early career scientists through initiatives like MPOWIR.
Scientists have developed a novel mission to collect year-round measurements of the ocean near Antarctica, revealing that deep water driving melting at the Totten Glacier is warmer and thicker in winter than summer. The study suggests the glacier might melt more rapidly in winter, with potential implications for future sea level rise.
A new ocean climatology reveals the global ocean is warming due to changes in atmospheric conditions, with temperatures increasing by 0.05°C over the past 25 years. The study provides valuable background information for various applications and highlights the importance of periodic updates to ocean climatologies.
A new study finds radioactive carbon from nuclear bomb tests has reached the deepest parts of the ocean, contaminating crustaceans' muscle tissues and affecting their longevity. The study suggests human pollution can quickly enter the food web and make its way to the deep ocean.
Researchers found an ocean heat-transporting mechanism controlling the monsoon's intensity. The mechanism strengthens the monsoon when winds drive south-flowing waters that cool the ocean.
The Ocean Exploration Cooperative Institute will survey an estimated 3 billion acres of US ocean territory over five years, utilizing next-generation instruments like ROVs and AUVs. The institute's telepresence technology will allow the public to interact with scientists in real-time, improving the efficiency of ocean exploration.
Tapping into ocean freshwater resources could threaten onshore aquifer systems, lead to diminished groundwater availability and cause land subsidence. This could have devastating effects on coastal population centers, especially in densely populated areas.
Scientists have found that part of the world's largest ice shelf is melting 10 times faster than average due to solar heating of surrounding ocean surface. The Ross Ice Shelf's stability is affected by both deep ocean water and surface solar heat, with implications for sea level rise and glacier flow.
Researchers analyzed wind speed and wave height measurements from satellites and ocean buoys to find extreme winds increasing by 8% and waves by 5% in the Southern Ocean over the past 30 years. This increase has significant implications for rising sea levels and coastal flooding.
A new paper outlines critical mechanisms involved in the ocean carbon cycle, specifically the biological pump. Researchers found that particle injection pumps are a more efficient way of pulling carbon from the surface into the deep waters.
A recent study published in Scientific Reports reveals a vast diversity of ocean microbes called protists, which form complex relationships with other members of the microbial food web. The research team analyzed over 900 single cell genomes, documenting genetic code that had never been identified before.
Researchers aim to refine understanding of how carbon moves in the ocean by studying lesser-known mechanisms such as particle injection pumps. These processes, including vertical migration and subduction, are thought to sequester significant amounts of carbon, rivaling the biological gravitational pump.
A new study proposes using iron powder produced by bacteria to stimulate growth of phytoplankton in the ocean, which can help remove carbon dioxide from the atmosphere. This approach aims to supplement decreasing carbon emissions and mitigate climate change by fertilizing microscopic ocean plants.
Researchers evaluated diverse carrot germplasm for salinity tolerance and identified a wide range of phenotypic variations. The study found that many cultivated carrots are saline-sensitive during germination but some wild and cultivated accessions exhibit high salt tolerance.
A global team of scientists has measured the ocean's sink for man-made CO2 over a period of 13 years, finding that it takes up 34 gigatonnes between 1994 and 2007. The absorption rate is congruent with the increase in atmospheric CO2 levels.
A new study forecasts that ocean acidification will reduce the depth at which some shelled organisms can survive to just 83 meters by 2100. This drastic reduction in viable habitat could impact marine food webs significantly and lead to cascading changes across ocean ecosystems.
Scientists have found a new way for microorganisms to convert nitrogen into a form usable by organisms in the Arctic Ocean. This process, known as nitrogen fixation, could make phytoplankton more productive, ultimately decreasing atmospheric carbon levels.
A new study found that a slowing of ocean circulation in Antarctica's waters drastically altered global ice age cycles, making them colder and longer. The mid-Pleistocene transition, with no obvious orbital cause, remains largely unexplained.
New research confirms that drastic changes in ocean salinity can cause 'freshwater bleaching' of coral reefs, leading to cell function collapse. The study found corals sensitive to slight changes, with nearshore reefs exposed to half normal ocean salinity causing a shock response preventing normal cell function.
A new study found that the Carlsbad Desalination Plant's brine discharge exceeds permitted levels, affecting offshore salinity. The researchers discovered no significant changes in seafloor organisms, likely due to pre-existing industrial activity in the area.
The 2018 ocean heat content observations reveal the highest recorded temperature for the global ocean since the 1950s. This increase in heat content is ~100 million times more than the Hiroshima bomb and highlights the consequences of global warming on oceanic water temperatures.
Researchers found a direct association between ocean warming and increased wave energy globally. The study revealed a long-term trend of growing wave energy, particularly during extreme storm seasons, with devastating impacts on coastal areas.
A recent laboratory culture experiment found that benthic foraminifera communities are highly sensitive to changes in temperature and salinity, with temperature having a more significant impact. The study suggests that these microorganisms can be used as indicators of marine ecosystem changes.
New research reveals ocean heat content is accelerating, with 2018 likely the hottest year on record. The warming contributes to sea level rise, increased rainfall intensity, and stronger storms.
The study examines how ocean acidification affects iron availability to phytoplankton, a critical nutrient for marine productivity. Researchers aim to develop proxies for quantifying iron availability under present and future ocean acidification conditions.
A new study reconstructs ocean heat storage since 1871, revealing key changes in temperature history and circulation patterns. The findings suggest that up to half of mid-latitude Atlantic Ocean warming can be attributed to changes in ocean circulation since the 1950s.
A century and a half of reconstructed ocean warming offers insights into the Earth system's energy balance. The study suggests that global warming of the oceans has occurred over the past 150 years, with comparable warming patterns observed in the 1920s-1940s and 1990s-2015.
Researchers found that the deep Pacific Ocean lags behind in terms of temperature and is still adjusting to the Little Ice Age. The ocean's long memory indicates that it 'remembers' past climate conditions hundreds of years ago.
Researchers found that the deep Pacific Ocean is cooling due to historical climate variability, influencing modern warming trends. The discovery estimates a 30% downward revision of heat absorbed over the 20th century.
Scientists discovered modifications in a sodium transporter gene, HKT1;1, which enable plants to adapt to varying soil salinity. The study used genomic analysis and sequencing techniques to reveal genetic variations that improve osmotic adjustment and prevent salt toxicity.
Researchers are working to understand subseafloor microbial communities and their potential impact on Earth's biosphere. They've discovered that microbes living in deep ocean sediments may represent as much as one-third of Earth's total biomass, with the habitable part of the ocean crust potentially being 10 times greater.
A study by researchers from Bigelow Laboratory for Ocean Sciences found that mussels readily take in microplastic fibers but quickly flush most of them out. This suggests that marine animals may play a role in mitigating the impact of microplastics on ecosystems.
Researchers at the University of Delaware have found a previously unknown pathway for heat to travel from the Pacific to the Indian Ocean, bypassing the Indonesian Throughflow. This discovery has significant implications for climate change research and could inform scientists about global warming.
Researchers have discovered that adult Antarctic krill are largely unaffected by ocean acidification levels predicted within the next 100-300 years. The long-term laboratory study found that krill can survive, grow and mature in acidic conditions.
The US Navy's Task Force Ocean aims to advance its tactical advantage through better understanding of the ocean environment. The initiative will increase research funding and sponsor graduate students and post-doctorates in physical oceanography and acoustics.
The ocean floor is dissolving rapidly as a result of human activity, with calcite formation being neutralized by acidic CO2. Researchers predict that this process will intensify in the future, leading to long-lasting repercussions on marine ecosystems.
Research suggests that climate change-associated flooding can reduce seawater salt content, inducing stress in oyster animals. Even the most tolerant groups show vulnerability to future freshwater flooding events.
A study published in PLOS ONE found that the glass sponge Vazella pourtalesi has persisted on the Scotian Shelf, which experiences strong multi-decadal variability in temperature and salinity. The sponge's ability to adapt to these changes suggests its potential response to future climate change.
Researchers found structural changes in myelin sheaths triggered by environmental factors can lead to autoimmune attacks that cause MS. The study suggests even minor changes in local conditions may precipitate the disease.
Scientists have discovered that westerly winds strengthen ocean acidification in Southern Ocean, which is critical for predicting its impact on marine life. The study sheds light on the mechanisms driving this process and provides insights into improving prediction models.
The study assesses 13 ocean-based measures to reduce atmospheric CO2, counteract ocean warming, and mitigate sea-level rise. Ocean-based renewable energy stands out as the most promising solution, with moderate effectiveness for reducing marine pollution and protecting marine habitats.
The Ocean Solutions Initiative presents a comprehensive review of thirteen ocean-based measures to counter climate change. The measures can be grouped into four categories: reduction of climate change causes, preservation of ecosystems, protection of the ocean from solar radiation, and direct manipulation of species adaptability.
The new global marine environmental forecasting system will provide accurate predictions of ocean temperature, salinity, velocity, and tidal currents with a horizontal resolution of 10 km. The system's accuracy is expected to reach an advanced international level, enabling clear identification of ocean mesoscale phenomena.
Researchers found that inoculation of rice plants with Brevibacterium linens RS16 improved photosynthetic traits and reduced volatile emissions in response to salt stress. This non-invasive approach enhances plant salinity tolerance, offering a potential solution for crop productivity under saline conditions.
The National Science Foundation has awarded a coalition of institutions, led by the Woods Hole Oceanographic Institution, a five-year, $220 million contract to operate and maintain the Ocean Observatories Initiative. The OOI is an advanced system that measures various ocean properties and processes.
A new NOAA report finds that 49 million adults participated in ocean and coastal recreation, spending $141 billion and supporting 3.1 million jobs. The Pacific region had the largest participation, with nearly 14 million participants spending over $39 billion.