Add BrightSurf on Google Email

Rivers contain hidden sinks and sources of microplastics

Researchers found an average of 41 microplastic particles per square meter per day settled from the atmosphere, while sediment samples contained denser particles with higher population densities. The study suggests clothing is likely the prominent source of microplastics to the Ganges River system.

SourceUniversity of Plymouth·JournalScience of The Total Environment·TypeMeta-analysis·DateSep 25, 2023

Peru’s Operation Mercury stopped most illegal gold mining in one biodiversity hotspot in the Amazon. Then the COVID-19 pandemic hit.

Operation Mercury successfully halted most illegal gold mining activity in La Pampa, Peru, reducing deforestation and water quality issues. However, spillover effects led to increased mining in legal areas, highlighting the need for stronger regulations to mitigate environmental harm.

SourceDartmouth College·JournalConservation Letters·TypeImaging analysis·DateSep 21, 2023

The earliest deep-sea vertebrates revealed by unusual trace fossils

The discovery of rare fossils in 130-million-year-old rocks reveals the earliest evidence of deep-sea fishes, dating back to the Early Cretaceous period. The findings shed light on an obscure chapter in the history of life on Earth, forcing scientists to reconsider factors that triggered vertebrate colonization of the deep sea.

SourceFaculty of Sciences of the University of Lisbon·JournalProceedings of the National Academy of Sciences·DateSep 12, 2023

New URI study finds extensive microplastics in Narragansett Bay

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.

SourceUniversity of Rhode Island·JournalScientific Reports·TypeObservational study·DateAug 28, 2023

Going with the flow

Researchers have developed a new method to estimate river flow rates on Mars and Titan, utilizing satellite observations and mathematical equations. The technique allows for predictions of river flow times, sediment size, and potential support for life, shedding light on these celestial bodies' geological pasts.

SourceMassachusetts Institute of Technology·JournalProceedings of the National Academy of Sciences·DateJul 10, 2023

New study reveals abrupt shift in tropical Pacific climate during Little Ice Age

A recent study analyzed sediment cores from a Philippine lake, revealing a 200-year period of drought in the western Pacific during the Little Ice Age. The researchers attribute this change to zonal gradients in sea surface temperature, which highlights the importance of understanding past climate dynamics for predicting future climate...

SourceGFZ GeoForschungsZentrum Potsdam, Helmholtz Centre·JournalCommunications Earth & Environment·TypeExperimental study·DateJul 3, 2023

Neanderthal cave engravings are oldest known – over 57,000 years old

Researchers have identified finger-marks on a cave wall in France as the oldest known Neanderthal engravings, dating back to around 75,000 years ago. The marks were made using a plotting analysis and photogrammetry to create 3D models, confirming that they are deliberate, organized shapes created by human hands.

SourcePLOS·JournalPLOS ONE·TypeObservational study·DateJun 21, 2023

River diversions may cause microplastics to remain longer on land and in streams before reaching oceans

A new study reveals that diverting streams and rivers for irrigation can significantly extend the time microplastics spend in river catchments. Researchers found a strong link between urbanisation and microplastic concentrations, with microplastic loads increasing downstream of more urbanised areas.

SourceUniversity of Birmingham·JournalWater Research·TypeExperimental study·DateJun 5, 2023

Fauna return rapidly in planted eelgrass meadows

Researchers from the University of Gothenburg found that replanted eelgrass meadows can restore biodiversity rapidly, with up to 80% of invertebrates returning after just three months. The study's findings suggest smaller plot sizes can be used, saving money on restoration efforts while maintaining ecosystem health.

SourceUniversity of Gothenburg·JournalRestoration Ecology·TypeExperimental study·DateMay 17, 2023

Paper refutes assertion that effects of bottom trawling on blue carbon can be compared to that of global air travel

A Bangor University paper quantifies the carbon benefits of ending bottom trawling, finding only a small fraction of seabed carbon reacts to disturbance. The study challenges the validity of previous claims and suggests using 'carbon credits' for banning trawling may actually increase overall CO2 emissions.

SourceBangor University·JournalNature·TypeCommentary/editorial·DateMay 10, 2023

Archaeologists map hidden NT landscape where first Australians lived more than 60,000 years ago

Scientists have used sub-surface imaging and aerial surveys to uncover the Red Lily Lagoon area in West Arnhem Land, revealing significant implications for understanding the First Australians. The study provides a new way to understand the rock art in the region, which is recognized globally for its significance and distinctive style.

SourceFlinders University·JournalPLOS ONE·TypeSurvey·DateMay 4, 2023

Novel method of analyzing microplastic particle pollution can facilitate environmental impact assessment

Researchers propose a novel approach to analyzing microplastic particles, highlighting the importance of particle size and shape in determining environmental impact. Studies show that even samples with similar numbers of particles can have varying levels of plastic pollution based on mass, volume, and specific surface area.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalEnvironmental Science and Pollution Research·DateFeb 28, 2023

Research explains strength of earthquake shaking in Nenana Basin

The study found that seismometers overlying the basin's deepest areas recorded stronger low-frequency amplification, while monitors at shallow edges recorded minimal amplification. Higher frequency amplification was detected in both deeper and shallower areas. This phenomenon is making the ground motion last longer and feel stronger.

SourceUniversity of Alaska Fairbanks·JournalBulletin of the Seismological Society of America·TypeMeta-analysis·DateJan 26, 2023

UN: Trapped sediment robbing world’s large dams of vital water storage capacity; ~26% loss by 2050 foreseen

The UN reports that roughly 50,000 large dams worldwide will lose an estimated 23% to 28% of their combined original storage capacity by 2050, resulting in a loss of around 1.65 trillion cubic meters of water. This loss will undermine water security, irrigation, power generation, and other essential services.

SourceUnited Nations University - Institute for Water, Environment and Health·JournalSustainability·TypeData/statistical analysis·DateJan 11, 2023

Climate warming reduces organic carbon burial beneath oceans

A new study reveals that climate warming can reduce the burial of organic carbon beneath the ocean, leading to increased atmospheric carbon release. Researchers analyzed over 50 years of seafloor sediment cores, finding a significant decrease in organic carbon burial during certain periods, particularly during the mid-Miocene era.

SourceRice University·JournalNature·TypeMeta-analysis·DateJan 4, 2023

Finding faults deeply stressful

Researchers at Kyoto University have found that the Tohoku earthquake may have occurred upon a complete stress release, with data suggesting normal faults in both sedimentary formations above and below the plate boundary fault. This discovery provides insights into how fault slipping contributed to the devastating tsunami.

SourceKyoto University·JournalEarth and Planetary Science Letters·TypeExperimental study·DateDec 8, 2022

Discovery of world’s oldest DNA breaks record by one million years

Scientists have identified two-million-year-old DNA fragments in northern Greenland's Ice Age sediment, providing insights into the past ecosystem and its potential to predict climate change. The discovery has sparked hopes that it could help academics build a picture of the DNA evolution of species still in existence today.

SourceSt. John's College, University of Cambridge·JournalNature·TypeData/statistical analysis·DateDec 7, 2022

The incredible power of the ice that sculpted Europe’s landscape

The Eurasian Ice Sheet sculpted Europe's landscape through extreme erosion over the last 100,000 years, with climate and geology playing key roles. The study reveals vast networks of subglacial rivers, promoting faster ice flow and sediment transport, with significant implications for marine carbon sinks and coastal communities.

SourceUiT The Arctic University of Norway·JournalNature Communications·TypeComputational simulation/modeling·DateNov 30, 2022

Climate crisis and anthropic pressure are destabilizing the Pantanal

Researchers found that summer rainfall and autumn-winter dry days are increasing, leading to fluvial discharge and sediment load in rainy seasons and water deficits in dry seasons. The Pantanal's complex geomorphology, including mega-fans and self-affine landforms, makes it susceptible to anthropic interference.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalJournal of South American Earth Sciences·DateNov 17, 2022

Climate change could make High Arctic fertile ground for emerging pandemics: uOttawa study

A novel genetic analysis by University of Ottawa researchers reveals that climate change could lead to an increased risk of viral spillover in the High Arctic. This increased risk may result in new viruses infecting previously uninfected hosts, potentially leading to emerging pandemics.

SourceUniversity of Ottawa·JournalProceedings of the Royal Society B Biological Sciences·TypeComputational simulation/modeling·DateOct 19, 2022

Scientists discover mechanism that can cause collapse of great Atlantic circulation system

Researchers found that subsurface warming in the North Atlantic precedes the release of massive icebergs from Canada and the US, leading to a reduction in surface salinity and AMOC collapse. This finding sheds light on the sequence of events responsible for the collapse of the Atlantic meridional overturning circulation system.

Satellites capture massive drainage of proglacial lake in remote Patagonia

Researchers from Hokkaido University used satellite images to observe the sudden drainage of proglacial lake Lago Greve in Chilean Patagonia, resulting in a 18-meter drop in water level and a loss of 3.7 cubic kilometers of water. The study suggests that the cause was the collapse of a sediment bump at the lake's outlet, highlighting t...

SourceHokkaido University·JournalCommunications Earth & Environment·TypeImaging analysis·DateOct 3, 2022

Lake sediments show decades of coal ash contamination

A study by Duke University and Appalachian State University reveals that coal ash pollution has been more persistent and widespread than previously known, with large quantities deposited in lake sediments. The contaminants can leach into the aquatic food chain, posing chronic risks to ecosystems.

SourceDuke University·JournalEnvironmental Science & Technology·TypeObservational study·DateOct 3, 2022