Researchers emphasize global importance of tree crops for achieving UN Sustainable Development Goals, while promoting biodiversity conservation and mitigating climate change. Tree crops provide stable habitats, prevent soil erosion, and contribute to greenhouse gas reduction.
A new study maps Arctic coastal communities and infrastructure, revealing that 21% of settlements will face damage due to erosion, while 45% will be affected by sea level rise. By 2100, 77% of the Arctic infrastructure may sit on ground no longer frozen solid.
A new study published in Scientific Reports reveals that Aldabra Atoll's shoreline has maintained its net shoreline and total land area over 51 years, with an average change rate of 25 cm per year. The lagoon shoreline underwent more rapid changes than the ocean shoreline, particularly in areas exposed to wind and waves.
Developed by a research team, the DEA coating boasts strong erosion–corrosion resistance thanks to its multi-layer gradient structure and amylose hydrogel layer. The coating can fully repair cracks up to 50 μm wide, significantly reducing erosion rates and offering enhanced protection for underwater pipeline systems.
A new long-term soil health survey in Uganda aims to understand the role of tenure security and plot decision-makers in soil health outcomes. The survey identifies differences in soil health between plots managed by women farmers and men farmers.
The University of North Florida has been awarded a nearly $800,000 grant from the National Park Service to ramp up coastline restoration efforts in Florida and Georgia. The project will utilize pervious oyster shell habitat (POSH units) to create living shorelines that help restore coastal ecosystems.
Scientists warn that Alaska's Arctic Coastal Plain will experience unprecedented transformation due to the compounding effects of sea level rise, permafrost thaw subsidence, and erosion. By 2100, total land loss is expected to exceed erosional losses by up to eight times, posing new challenges to coastal communities.
A recent study reveals that glaciers exert significant control over fluvial sediment yield, particularly in regions with high precipitation and glacier cover. The team found that vegetation plays a crucial role in influencing sediment transport, with some areas experiencing increased erosion while others experience stabilization.
A new Stanford review of hundreds of studies found little to no sediment dating back to the 34 million-year-old Eocene-Oligocene climate transition, contradicting conventional models. The researchers attribute this globally extensive gap in the geologic record to vigorous ocean bottom currents triggered by major climate shifts.
A new study finds that a nearby eroding river gorge is causing Mount Everest's peak to rise by 15-50 meters over the past 89,000 years. The research suggests that the loss of landmass due to erosion is causing the mountain to spring upwards by as much as 2 millimeters a year.
Researchers developed new surface treatments to reduce biological toxicity effects on marine organisms. Biofilm growth and coral survival were significantly improved on surface-treated samples, while bulk-treated samples showed reduced biofilm growth and mechanical properties.
Researchers propose a simple indicator of crop's impact on soil erosion, calculating its 'soil footprint' for Spain's main crops. The study reveals that olive trees have the largest 'soil footprint', while onions and potatoes have the smallest, emphasizing the need to adopt protective strategies to reduce soil erosion.
A new study found that soil erosion significantly contributed to devastating desert floods in Libya, claiming over 11,300 lives. The research highlights the urgent need for advanced earth observations programs to monitor arid areas due to climate change.
Researchers have developed a bioinspired process to make marine sand more durable and resistant to erosion by applying a mild electric current. This natural cement reduces the need for expensive protection structures and provides a sustainable solution for strengthening global coastlines.
Researchers developed a new electrical contact material, Ag-Ta2AlC, which exhibits high arc erosion resistance. The composite material showed the lowest arc energy and shortest arcing time among various compositions.
Researchers found that well-draining soils and vegetation can manage runoff on solar farms, while engineered stormwater controls can mitigate unmitigated runoff. The study provides new insights into hydrological phenomena on solar farms, particularly on steep and complex landscapes.
A study published in Frontiers in Fungal Biology reveals that microcolonial fungi and lichens on petroglyphs in the Negev desert can cause gradual erosion and damage. The researchers identified multiple species of these fungi and lichens, which are known to thrive in hot and cold deserts.
Researchers from UNIGE have measured the increase in soil erosion caused by global warming, with a four-fold increase observed in sediments from the Paleocene-Eocene Thermal Maximum. This study suggests that current warming could lead to similar effects, increasing flood risks and threatening populated areas.
Researchers used simulations to model the erosion of Titan's shorelines, finding that waves are the most likely explanation for the moon's lakes and seas. The team found that wave activity could have shaped the coastlines of lakes and seas on Titan.
Researchers evaluated the impact of hydroelectric project construction on regressive erosion and land use/land cover changes in Ecuador's Coca River. The study found an acceleration of regressive erosion post-CCSHP implementation, affecting fluvial dynamics and environmental protection.
A USC study finds that rising sea levels and urban development are accelerating coastal erosion in Southern California, with predicted costs tripling by 2050. Beach nourishment projects will become increasingly costly due to the global increase in sand prices.
Researchers analyzed the genome of Corylus chinensis to understand its demographic history and adaptive potential. They found species-specific gene families involved in adaptation and identified diverged genetic lineages with southwest-northern differentiation patterns.
Researchers found that water erosion acts as a net sink of atmospheric CO2, offsetting horizontal soil organic carbon removal. The study suggests that ecological restoration projects and tillage practices can improve the capacity of the carbon sink for recovery beyond the rate of horizontal carbon removal.
Researchers found that weathering in the region leads to an overall CO2 uptake, but near-surface processes only determine the CO2 balance in areas with a thick and cold crust. In contrast, the western side of the Central Apennines is a significant CO2 emitter due to deep-seated outgassing from carbonate rocks.
The MIT-designed 'architected' reef could dissipate more than 95% of incoming wave energy using a fraction of the material needed, reducing erosion and flooding. The cylindrical structure's unique design leverages turbulence to efficiently break waves, making it a potential solution for coastal protection in various water conditions.
A database containing over 6,000 agri-environmental policies from 200 countries has been published by the University of Bonn and ETH Zurich researchers. The study found that richer countries tend to implement more eco-friendly measures, while national policies play a significant role in reducing soil erosion.
A new study finds that mountains can switch from being a sink of carbon dioxide to a source as their erosion rate increases. The optimal erosion rate for maximizing carbon dioxide removal through mineral weathering is approximately 0.1 millimeter per year.
Research reveals that low-relief mountain ranges with moderate erosion rates have the highest CO2 capture through silicate weathering. In contrast, high-eroded regions release more CO2 due to faster carbonate and sulfide weathering. These findings suggest a complex relationship between erosion rates and the carbon cycle.
A new study found that atmospheric carbon dioxide (CO2) drawdown from chemical weathering of rocks is limited to a narrow range of moderate erosion rates. This has significant implications for understanding the constraints of weathering-mediated CO2 drawdown and resolving conflicting data on its impact on the climate.
New research from the University of Utah reveals that pollen analysis indicates salt crusts formed between 5,400 and 3,500 years ago, contradicting the long-held assumption that they formed when Lake Bonneville dried up 13,000 years ago. The study's findings suggest a dynamic landscape with significant erosion and sediment accumulation.
The Arctic Landscape EXplorer (ALEX) provides spatially explicit information on recent or ongoing thaw and erosion in the Arctic. ALEX contains data on satellite-derived trends in land surface changes at 30m resolution, offering insights into permafrost stability and its impact on infrastructure and communities.
A study reveals that sea otter reintroduction has slowed creekbank erosion by up to 90% and restored marsh stability despite rising sea levels and pollution. The researchers suggest that this phenomenon can have far-reaching benefits for ecosystems worldwide, overturning the traditional bottom-up paradigm of coastal geomorphology.
The reintroduction of sea otters to their former habitat in Central California's Elkhorn Slough has slowed erosion of creekbanks and marsh edges by up to 90%. The study, published in Nature, highlights the benefits of conservation efforts and suggests a promising tool for stabilizing ecosystems worldwide.
New research highlights the importance of bystander support in preventing norm erosion and addressing anti-social behaviour. By stepping up to support someone who is confronting poor behaviour, bystanders can send a strong message that such behaviour is unacceptable, helping to prevent its toleration in society.
A new study reveals how sika deer foraging is causing soil erosion, reducing the growth of Japanese beech trees. The research found that exposed roots are more vulnerable to water loss, affecting tree health and increasing vulnerability to climate change and pests.
A team of UVA civil and environmental engineers and environmental scientists have developed a web-based decision-support tool, called the Climate Equity Atlas, to help residents deal with the challenges caused by climate change. The tool combines historical environmental data and socioeconomic data to create a sophisticated predictive ...
Researchers at University of Houston have developed a novel detection method for pipeline elbow erosion using percussion and machine learning. The new method shows great applicability in different pipeline elbows with the same structure and dimension, achieving accuracy greater than 90% in detecting erosion.
Researchers use rhenium as a proxy for carbon to quantify the rate of fossil carbon dioxide release into the atmosphere. The study found that high rates of carbon breakdown persist from mountaintop to floodplain, offering valuable insights into the planet's history and response to climate challenges.
A new method calculates rockfall risk over large areas of very high mountains, considering both earthquake-induced and erosion-driven risks. The study found that nearly 60% of total rockfall hazard in the Andean zone is attributable to seismic activity.
The Curiosity rover has found new evidence of ancient Martian rivers, suggesting that much of the planet's craters could have been habitable. The discovery provides a more optimistic view of ancient life on Mars, with potential for widespread river activity and nutrient cycles.
The Arctic Permafrost Atlas reveals alarming changes in landscapes, ecosystems, and human lives due to climate change. Over five million people are at risk of losing frozen ground beneath their feet by 2050, with significant economic implications for oil and gas production.
UBC Okanagan researchers have developed sensors that can detect erosion and breaches in protective coatings, reducing inspection time and error risk. The AI-enabled sensors can also distinguish individual layer erosion within multi-layer coatings, enabling proactive monitoring and addressing of equipment degradation.
A study by the University of Córdoba found that ground cover reduces erosion, runoff, and organic carbon loss in Mediterranean olive groves. The research showed a significant decrease in carbon loss of up to 76.4% compared to conventional tillage.
Researchers found that mature mangroves can tolerate high rates of subsidence and sea level rise, but sediment availability is crucial for their effectiveness. In areas with insufficient sediment, mangroves' ability to stabilize coastlines will deteriorate, leading to inland migration of communities.
A recent study at the University of Bonn found that mixed cover crops grow thinner roots than single-type cover crops, contradicting previous assumptions. The researchers tested oil radish, winter rye, and crimson clover in different combinations and observed varying root growth patterns.
A new study reveals massive urban expansions throughout the contiguous US, particularly on the Atlantic Coast, have led to significant tidal flat erosion. The research highlights the critical impact of human activities on tidal flat environments, providing important implications for coastal land use and planning.
Researchers from Osaka University found that fibroblasts in cholesteatoma tissues express activin A, a protein causing local bone erosion. This discovery may lead to new treatments for managing cholesteatomas.
Scientists have found evidence of impacts over 3.5 billion years ago but can't find the actual craters. Erosion and geological processes have erased mega-craters, leaving only a few remnants. Researchers studied the Vredefort crater, one of the oldest known impact structures, and found that even large craters can be swept away by erosion.
A new study using nearly a century of seismic data suggests that the average heights of winter waves along California's coast have increased as climate change has heated up the planet. This could amplify the effects of sea-level rise, leading to significant coastal impacts and erosion.
Research in the BMJ Open journal suggests that mid-life structural changes to the jawbone may signal subsequent height loss in women. The study, conducted on a cohort of women in Gothenburg, Sweden, found that severe cortical erosion and sparse trabeculation in the jawbone predicted significant bone shrinkage over time.
A new study led by Brown University researchers reveals that Martian gullies could have been formed by on-and-off periods of meltwater from ice on and beneath the planet's surface. The study found that when Mars tilts on its axis to 35 degrees, conditions become dense enough for brief episodes of melting to occur.
Climate change is shifting snowfall to rainfall on mountains across the Northern Hemisphere, increasing the risk of floods, landslides, and soil erosion. The study found that for every 1 degree Celsius increase in global temperature, high elevations can expect an average of 15% more rain.
This study reconstructs long-term clay mineral records to show the progressive aridification of Asia's interior since late Oligocene, driven by Tibetan uplift and global cooling. Clay mineral evolution reveals strengthened continental weathering and erosion in Asia.
Vegetation on coastal dunes was found to accelerate erosion during extreme events, contrary to the current understanding that it provides protection. The study found that vegetation creates a physical barrier, decreases wave run-up, and increases water penetration, leading to destabilization and scarp formation.
Researchers at Oregon State University found that newly planted coastal switchgrass on sand dunes can accelerate erosion from extreme waves. The study suggests that vegetation initially creates a physical barrier but also increases water penetration into the sediment bed, leading to destabilization and accelerated scarp formation.
A new study published in Earth's Future predicts that adopting sustainable 'no-till' or 'low-till' practices can stop Midwest topsoil loss in its tracks, reducing erosion by 95% over the next 100 years. This could save billions of dollars and mitigate crop productivity losses due to soil erosion.
The US has lost 57.6 billion tons of topsoil due to farming practices, but new research suggests no-till methods can drastically reduce erosion and extend fertility for centuries. No-till farming, currently practiced on 40% of Midwest cropland acres, can modelled to slow down soil loss.
A new Yale-led study found that river erosion generates biodiversity of freshwater fish species in the Appalachians. The research suggests that gradual internal dynamics of erosion isolate populations, leading to speciation.
A study suggests that river erosion can drive biodiversity in geologically quiet environments, such as the Appalachian Mountains. The research found that changing landscapes pushed a species of fish into different tributaries, leading to distinct genetic lineages.
A team of scientists, including a University of Central Florida researcher, is developing oyster-based shoreline protection for U.S. coastlines. The project aims to create self-repairing reef-mimicking structures to mitigate coastal flooding and erosion.