Agroecological methods improve biodiversity, pollination, natural pest control, and crop yields, but new subsidies are needed to support farms' transition. The study found that incorporating nature-friendly practices increases benefits for nature and farmers, with higher soil carbon and overall increased crop yields.
A study of 100,000 water samples from 500 river basins found elevated levels of contaminants like organic carbon, phosphorus, nitrogen, and sediment persisting for years after wildfires. Water managers can use this data to inform planning strategies for increasing wildfire resilience.
A study by Göttingen University researchers combined satellite data with manual measurements to better understand forest soil moisture. The findings show that soil moisture is strongly influenced by weather and season, not exact location, and highlight the importance of monitoring soil moisture over time for effective forest management.
Record-breaking wildfires are rapidly transforming forests from carbon sinks to super-emitters due to warming and drought conditions. Planting trees can even increase wildfire risk in some cases.
A team at the University of Oxford created a comprehensive map of the world's rivers, capturing complex branching systems. The new GRIT mapping system improves flood models, water management, and disaster planning, supporting AI-driven global data-driven models.
The latest watchlist identifies 145 non-native animals and plants that could impact biodiversity, ecosystems, human health, and economies in Britain. The top 20 threats include invasive salmon, clams, seaweed, and species like the yellow-legged hornet, raccoon, and Emerald ash borer.
A study by McGill University researchers estimates that about 8,500 tonnes of antibiotics end up in river systems around the world each year, posing a risk to human health and aquatic ecosystems. Amoxicillin is the most likely to be present at risky levels, especially in Southeast Asia.
The Scientific Annals of the Danube Delta Institute (SADDI) joins Pensoft's portfolio as an open-access, peer-reviewed journal. SADDI publishes research in ecology, biodiversity, environmental protection, and sustainable development related to the Danube Delta and similar wetland ecosystems.
Recent rainfall patterns play a critical role in triggering humid heatwaves in tropical and subtropical regions. In drier regions, humid heatwaves are more likely during or just after periods of enhanced rainfall, while in wetter regions, they tend to follow at least two days of suppressed rainfall.
A new study developed a method to measure evapotranspiration in the understorey of native forests, which can contribute up to 50% of ecosystem water use. The research aims to improve management decisions for water scarce resources in Australia.
The March 28 magnitude 7.7 Myanmar earthquake ruptured over 400 kilometers of the Sagaing fault, causing severe ground shaking and infrastructure damage. Seismologists shared early analyses of the event's fault properties, highlighting a supershear rupture and widespread triggering by dynamic stresses.
A new study by the UK Centre for Ecology & Hydrology reveals that soil moisture levels can increase rainfall area and amount in megastorm hotspots globally by up to 30%. This contrast results from atmospheric changes, enabling communities to better adapt to climate change.
A new approach is needed to monitor species and protect them from climate change, land use, pollution, and invasive non-native species. The study proposes a framework that integrates all available methods for studying insects, including comparing diversity and abundance over time and across different habitats.
Researchers found significant implications for water management and wildlife due to the decline in snowpack, affecting the Sainte-Anne River and its streamflow patterns. The study's findings align with historical records of droughts and heavy precipitation, highlighting the importance of protecting old growth forests.
Three UVA Engineering faculty members have been elected as AAAS Fellows for their groundbreaking work in computer architecture, energy transport, and hydrology. Sandhya Dwarkadas, Patrick E. Hopkins, and Venkataraman Lakshmi were recognized for their innovative research and contributions to their respective fields.
A new study by Desert Research Institute reveals higher levels of mercury and metal contaminants in Rocky Mountain snow, particularly in the northern part of the range. The research, led by Monica Arienzo, found that winter storms carrying snow from mines in the Pacific Northwest and Idaho brought these contaminants to the region.
Researchers studied Aurora Subglacial Basin's subglacial hydrology, finding dynamic rivers that change over time. This new insight may alter predictions of rising sea levels and the role of subglacial water in ice dynamics.
Research reveals Atlantic Ocean storms are primary drivers of Sahara lake filling, contradicting previous theories. Heavy precipitation events triggered by extreme rainstorms reshape water availability in the desert, with implications for ecosystems and human settlements.
Experts at Flinders University are calling for a new approach to water security on Pacific islands, where rising sea levels threaten local water supplies. Infiltration galleries, which extract fresh groundwater from shallow depths, may provide a solution, but more research is needed on their optimal design and performance.
New Jersey Institute of Technology biologist Xiaonan Tai receives a $1.16 million NSF CAREER Award to study how groundwater influences forest survival during climate stress, integrating ecology and hydrology perspectives.
Researchers introduce a performance-based framework that integrates hydroclimate variability, hydrology, machine learning, community knowledge and feedbacks between physical and social systems. This approach enhances understanding of flood risks while emphasizing long-term community resilience.
A study of 17,972 wells in Brazil reveals that more than half of the country's rivers could suffer reduced flow due to groundwater seepage. The São Francisco River basin and MATOPIBA region are particularly critical areas, with intensive agricultural activity and climate change exacerbating the problem.
A study found that reductions in zinc and copper pollution led to improvements in freshwater biodiversity in England's rivers. The researchers used statistical modeling to investigate various factors contributing to the decline in metal pollution.
A comprehensive global study reveals pesticides are a major contributor to the biodiversity crisis, affecting over 800 species of plants, animals, fungi, and microbes. The research highlights the need for policies and practices to reduce pesticide use, including regenerative agriculture and Integrated Pest Management.
Researchers generated a dataset of water flow beneath the entire Antarctic Ice Sheet, improving projections of sea level rise. The model predicts higher degrees of glacier melt and mass loss by the end of the century.
Climate change may lead to increased production of legumes such as chickpeas and soybeans, while oranges and okra become more widely grown. This could support shifts towards a more balanced diet and lower carbon footprint, but also poses economic and environmental risks.
A new study reveals that climate change can dramatically alter how grasslands use and move water. Under drought conditions and warmer temperatures in a CO2-rich climate, plants conserve more water by releasing less to the atmosphere through transpiration.
Researchers developed a new data assimilation algorithm using the LETKF technique to enhance global precipitation estimates. The model improved accuracy and computational efficiency, making it suitable for large-scale applications, particularly in mountainous regions.
Long-term drainage increases bound OC% in non-Sphagnum wetlands due to reactive metal oxides, but decreases it in Sphagnum wetlands. This mechanism helps compensate for lost unbound SOC components in non-Sphagnum wetlands.
The eLTER PLUS project offers funding for researchers studying biodiversity, biogeochemistry, and socio-ecological systems. Over 50 projects have been funded across Europe, contributing to understanding long-term ecosystem dynamics.
A new study using Arctic ice core records reveals that ancient Roman lead pollution likely caused widespread cognitive decline, with estimated IQ reductions of 2-3 points among the European population. The research team used advanced computer modeling and atmospheric movement to recreate historical lead pollution levels across Europe.
Roman Krzysztofowicz, a professor of systems engineering at the University of Virginia, has written a new book that combines his decades-long research on probabilistic forecasts and optimal decisions. His work builds on his early studies in hydrology and computer programming, which laid the foundation for his later studies in decision ...
A new study confirms the UK's effective action against the invasive Asian hornet has prevented its establishment. The invasive species, which devastates honeybee colonies in France and Italy, was first reported in the UK in 2016 but has not spread due to rapid eradication efforts by authorities and vigilant citizens.
Researchers call for a shift away from outdated bathtub modeling, which oversimplifies flood risks, and towards dynamical modeling that accounts for key factors like storm drains and levees. The study found that bathtub models are consistently inaccurate, with scores below 0.5 on the critical success index.
Research reveals two unique mercury accumulation patterns in Qinghai-Tibet Plateau wetlands, driven by climate change and human impact. The study found a 'Surface Peak' in monsoon-controlled regions and a 'Subsurface Peak' in westerly-controlled regions, highlighting the need for ecological sustainability efforts.
Research highlights knowledge gaps in plastics' effects on climate change, biodiversity loss, and environmental pollution. Scientists found only a few studies addressing impacts on climate change and biodiversity, while the majority focus on environmental pollution.
A new survey highlights the need to revive England's hedgerows to meet national restoration targets. While agri-environment schemes have improved hedge condition, overall length remains unchanged. Experts call for increased participation and better incentives among farmers and landowners to rejuvenate the network.
A new analysis finds that sustainable rates of groundwater withdrawal were surpassed 20 years prior to declining groundwater levels being generally recognized. Limiting groundwater pumping rates by nearly half can stabilize groundwater conditions, eliminating drying up of non-irrigation wells and stabilizing environmental flows.
Researchers developed a machine-learning tool that provides accurate predictions for flood-prone areas, using historical data and weather-based predictors. The model can predict short-term river discharge with high accuracy, giving real-time data on water movement through the river.
Scientists at Helmholtz Centre for Environmental Research - UFZ have discovered chimney-shaped vents on the Dead Sea floor, emitting shimmering fluid. The chimneys are similar to black smokers but originate from surrounding aquifers, providing a new tool for predicting sinkhole formation.
A study on Spanish dehesas has developed a tool to model pastureland productivity and water stress, allowing for more efficient grazing management. During severe droughts, grass production can drop by up to 67%, with areas having limited slopes and moderate tree cover being the most productive.
Researchers used satellite images to derive a global dataset of river width data, expanding the understanding of at-a-station hydraulic geometry. The study found that a 1% increase in discharge leads to a median 0.2% increase in river width worldwide, with weaker responses in areas with cohesive soil and high forest coverage.
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 reveals that Antarctic krill can lock away similar levels of carbon as key coastal habitats like seagrasses and mangroves. The research shows that krill store around 20 million tonnes of carbon annually, equivalent to a significant value in terms of carbon storage.
A new study reveals that the Amazon's remarkable variety of plants and animals was shaped by woodlands and savannas connecting forest islands during the last Ice Age. The researchers used advanced climate and vegetation modelling techniques to provide a new understanding of the region's evolution.
A new study by the UK Centre for Ecology & Hydrology predicts high-risk towns across Europe for dengue fever outbreaks, with southern France and northern Italy being most affected. The research uses advanced high-resolution modeling to provide daily risk assessments for each area.
A recent study by the UK Centre for Ecology & Hydrology found that growing maize to produce biomethane on drained peat emits up to three times more carbon dioxide than using natural gas. The production of crops like maize for bioenergy has rapidly increased, leading to a significant expansion of cultivated areas on drained peatlands.
A new study published in Agricultural Water Management uses satellite data to estimate groundwater use for crop irrigation at the individual field level. The researchers found that OpenET can accurately track water use with a high degree of accuracy, providing insights into irrigation efficiencies.
The State of Wildfires report found that carbon emissions from wildfires globally were 16% above average, with Canada and Amazonia experiencing unusually high numbers of fires. Climate change increased the likelihood of extreme wildfires in these regions by at least three times and up to six times.
A new mapping tool from North Carolina State University uses machine learning and open-source satellite imagery to model flooding in urban environments. The model creates maps that predict urban area flooding, helping officials make informed choices about flood resiliency and prevention resources.
A new study reveals that the Sierra Nevadas are a significant source of groundwater for California's Central Valley aquifer, with some areas relying almost entirely on it. The research found that the groundwater is mixed in age, with some water being as young as 4 years old and others dating back over 40,000 years.
A recent study published in Geophysical Research Letters found that most large flood events and potential flood peak periods in East Asia are dominated by mesoscale convective systems (MCS). The research revealed that among major floods from 2000 to 2021, 91% were related to MCS.
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.
Rosalina Christova, an assistant professor at George Mason University, has received $30,000 in funding from the Southern California Coastal Water Research Project to analyze benthic algae taxonomy and evaluate stream water quality. The study aims to understand climate change's impact on stream hydrology, algal communities, and desiccat...
Researchers calculated global potential for low-carbon floating solar arrays on nearly 68,000 lakes and reservoirs worldwide. The study found that five nations could meet their entire electricity needs from FPV, including Papua New Guinea, Ethiopia, and Rwanda.
A team of international experts emphasizes the need for collaboration across borders and within countries to address the growing threat of invasive alien species. The paper, published in Nature, Ecology & Evolution, highlights the critical evaluation of existing knowledge on invasive alien species and their control.
A new study finds that rising temperatures will significantly reduce streamflow in the upper Colorado river basin as groundwater levels fall. Groundwater storage would fall to its lowest known levels after a single extremely dry year and fail to recover even after multiple wet periods.
A new study predicts climate change will lead to an overall decrease in areas suitable for malaria transmission from 2025 onwards. The research used several climatic and hydrological models to create a more in-depth picture of malaria-friendly conditions on the African continent.
A recent study published in the Journal of Hydrology reveals significant changes in bioclimatic environments across China's dry–wet transition zones due to climate change. The research identifies these zones as hotspots of ecosystem vulnerability, emphasizing the need for targeted impact assessment and adaptation studies.
Researchers found that human-induced fluid fluxes in the deep subsurface are higher than natural rates, posing environmental impacts. The study highlights the need to manage the subsurface responsibly for a green transition and sustainable future.