The report identifies substantial opportunities for reducing greenhouse gas emissions and conserving scarce water resources by generating renewable energy. It highlights the potential for water sector innovation to increase renewable energy capacity, particularly in states like California.
Elsevier has launched a new journal dedicated to publishing fundamental and applied research on marine and ocean energy. The first volume is now available for free on ScienceDirect, covering topics such as fluid mechanics, design, and environmental assessment.
Frontiers' new journal in Energy Research will publish rigorously peer-reviewed articles on various topics related to energy systems, including nanotechnology solutions, policies, and storage. The journal aims to provide a free-to-access platform for researchers to share their findings with the scientific community.
Researchers found that cows fed controlled energy diets became pregnant 10 days sooner than those fed high-energy diets, and had improved body condition scores and lower disease incidence. This is due to the fact that they eat more after calving, reducing negative energy balance.
A Penn State University team wins the US Department of Energy poster competition using only 1000 commonly used words, explaining how energy from sunlight is captured by plants and stored in plant cell walls. The team's creative approach helped them win first prize out of 31 submissions.
A new study explores how 'Energy Theater' helps learners understand complex physics ideas, including energy flow and conservation. The activity allows students to personify energy and visualize its changes in a dynamic system.
The US Department of Energy has commissioned the Scaled Wind Farm Technology (SWiFT) facility to investigate and develop technology for wind plants. The facility will host research on improving wind plant performance, with a focus on reducing energy losses due to complex wind interactions.
Research shows that king penguin chicks' mitochondria adjust to minimize energy cost during fasting in the cold, conserving energy for vital functions. This adaptation enables them to produce heat without depleting their energy stores, increasing their survival chances.
The Energy Systems Integration Facility (ESIF) is a new research center that aims to boost clean energy technologies on a smarter grid. The facility will house experimental laboratories and outdoor test beds, including a petascale supercomputer, to support large-scale modeling and simulation. Advanced Energy Industries has already sign...
The E2e Project, a joint initiative of the Energy Institute at Haas and MIT's Center for Energy and Environmental Policy Research, aims to evaluate and improve energy-efficiency policies and technologies. The project seeks to provide valuable guidance to government and industry leaders, as well as consumers, on how to make smart choices.
A scientist suggests an alternative approach to calculating microbial growth thermodynamics, citing discrepancies between theoretical and experimental results. The Battley free energy equation offers a more realistic representation of real-world conditions.
The KASCADE-Grande experiment detected a bend in the energy spectrum of high-energy cosmic rays at different energies for light and heavy particles. The study reveals a flattening of the spectrum beyond the knee, indicating extragalactic acceleration, with the ankle structure appearing first in light primary particles.
Researchers at PNNL and BPA identified two unique methods and two sites in eastern Washington for compressed air energy storage. These plants can store wind energy produced at night and release it when demand is high, providing flexibility to balance the region's highly variable wind energy generation.
New York University physicists have found that energy is released and dispersed in magnetic materials through a process akin to forest fires. By manipulating magnetic fields, they were able to control the speed of this process and understand how energy is sustained and spreads.
Concordia University's NSERC Smart Net-zero Energy Buildings Strategic Network has received $1 million in new funding from Natural Resources Canada. This grant will support research and testing of progressive technologies to create net-zero energy homes and commercial buildings.
A study found that environmental labels can discourage conservative shoppers from purchasing energy-efficient products, instead promoting financial incentives and energy independence. The research suggests that a tailored message is needed to reach different market segments.
Researchers have designed a low-cost, long-life battery that can regulate natural fluctuations in solar and wind energy. The new battery uses lithium and sulfur molecules and has excellent energy-storage performance through over 2,000 charges and discharges.
The US Department of Energy's National Renewable Energy Laboratory (NREL) has launched an initiative to build an open-source database of real-world performance from solar facilities. The Open Solar Performance and Reliability Clearinghouse (O-SPaRC) aims to provide critical data on the long-term performance of residential and commercia...
The global solar photovoltaic (PV) industry is making positive strides in reducing its energy debt, with electricity generated by all installed PV panels likely surpassing energy used to manufacture new modules. Continued technological advances and efficient conversion of sunlight into electricity are key factors driving this progress.
Researchers at Berkeley Lab released a guide on planning and financing comprehensive energy upgrades for K-12 schools. The guide covers different financing approaches and contains case studies of successful projects, highlighting the benefits of energy efficiency upgrades in reducing costs and improving student learning environments.
Research analyzed seven studies to determine energy drink impact on heart health. Consuming energy drinks was found to prolong the QT interval, increasing the risk of life-threatening arrhythmias. Systolic blood pressure also increased significantly in participants.
The new HPC data center at NREL's Energy Systems Integration Facility (ESIF) is the first of its kind, boasting an annualized average power usage effectiveness (PUE) rating of 1.06 or better. It achieves this by using warm-water liquid cooling and capturing and reusing waste heat to reduce energy consumption.
A new study proposes converting New York's all-purpose energy infrastructure to renewable energy sources like wind, water, and sunlight. The plan aims to reduce pollution-related costs, create local jobs, and save the state billions of dollars annually.
NREL Engineer Ian Metzger named ASHRAE's New Face of Engineering, recognized for increasing energy efficiency and renewable energy deployment. The Research Support Facility in Golden, Colorado, also won an ASHRAE Technology Award for its net-zero design, using 50% less energy than traditional commercial buildings.
A new research project by the University of Nottingham aims to help UK households cut their energy bills by identifying troublesome appliances. By analyzing data from smart home sensors, researchers hope to provide personalized recommendations for behavior change, maintenance, or purchasing to make targeted savings.
A new study suggests that achieving the UN's Sustainable Energy for All (SE4All) objectives by 2030 could significantly reduce greenhouse gas emissions and help limit global temperature rise to 2°C. The initiative includes providing universal access to modern energy, doubling renewable energy globally, and improving energy efficiency.
PNNL researchers are developing a range of innovative clean energy technologies, including thermal energy storage that can store solar heat for up to 10 times longer than traditional molten salts. Additionally, the lab has created lightweight fuel tanks for compressed natural gas vehicles and rare earth-free magnets for electric motors.
Researchers at NCAR are creating a prototype system to forecast sunlight and resulting power every 15 minutes, enabling utilities to continuously anticipate available solar energy. The project aims to improve cloud prediction accuracy, helping utilities tap into solar energy more effectively and reducing dependence on fossil fuels.
A University of Texas at Arlington engineer has developed a semiconductor-based process to capture, store and transmit solar energy more efficiently. The new method increases the yield of solar energy by 10 times and improves efficiency fourfold compared to current methods.
Researchers recommend doubling US energy productivity by 2030 through investments in efficiency concepts, modernizing infrastructure, and educating consumers. This can create a million new jobs, save households $1,000/year, and reduce carbon-dioxide emissions by one-third.
A new open-source model, InVEST, provides spatially explicit information on offshore wind energy, helping decision makers quantify tradeoffs between energy, transportation, and fishing. The tool is significant for integrated marine spatial planning, enabling informed decisions on wind turbine placement.
A low-carbon hybrid energy system is proposed to integrate coal with nuclear, wind, solar, biomass, and hydro power to reduce CO2 emission and recycle carbon. The system utilizes carbon recycling to produce useful materials while increasing energy efficiency.
Lakewood High School Team 1 won the Colorado High School Science Bowl, defeating Cheyenne Mountain High School Team 1 with a score of 38-16. The team will compete against over 400 students from 70 high schools in Washington D.C. for the national title.
Assistant professor Hamed Mohsenian-Rad is designing plug-and-play energy consumption scheduling devices to control energy usage in electric cars and industrial machinery. His research aims to encourage consumer cooperation, support renewable energy integration, minimize generation cost, and maintain electrical power quality.
Spending on utility-funded energy efficiency programs will double by 2025, reaching $9.5 billion, as states in the Midwest and South expand their programs, driven by policies requiring cost-effective energy savings and energy efficiency resource standards.
The U.S. Department of Energy's NREL has created the Buildings, Industry, Transportation, Electricity, and Transportation Scenarios (BITES) tool to help users understand the complex issues surrounding cleaner energy. Users can adjust inputs to explore 'what-if' scenarios and compare outcomes to baseline cases.
A team led by Ames Laboratory will develop solutions to domestic shortages of rare earth metals and other critical materials for U.S. energy security. The Critical Materials Institute will bring together top researchers from academia, national labs, and the private sector to find innovative technology solutions.
A new study suggests introducing shareholder liability could reduce lock-in in the energy economy and spur a shift towards sustainable energy. The study argues that fossil fuel companies' profits are not tied to environmental damage, leading to a lack of incentive for change.
Scientists propose that early life forms utilized deep-sea hydrothermal vents to harness energy, driving the emergence of complex cellular structures. The new theory explains why all living organisms conserve energy in the form of ion gradients across membranes.
PNNL has been honored with three 2013 Excellence in Technology Transfer awards for developing innovative technologies such as redox flow batteries for renewable energy storage, radiogel products for targeted radiation therapy to fight cancer, and Ion Mobility Spectrometers for explosives detection. These technologies are expected to be...
Researchers highlight the need for fundamental research in geothermal and shale gas development to overcome challenges and maximize energy recovery. Enhanced geothermal systems and shale gas extraction face roadblocks, including induced seismicity and environmental impact.
Geoscientists highlight the importance of fundamental research in unlocking the full potential of emerging energy sources, including geothermal and shale gas. The development of these resources is hindered by geological and environmental challenges that must be addressed through basic scientific inquiry.
The Joint Center for Energy Storage Research (JCESR) will combine the R&D firepower of five DOE national laboratories, universities, and private firms to achieve revolutionary advances in battery performance. The project aims to reduce America's reliance on foreign oil and lower energy costs.
A team of Harvard engineers and chemists are working on a one-year, $600,000 grant from ARPA-E to develop a new type of storage battery that uses eco-friendly small organic molecules. The technology aims to make stationary energy storage cost-effective, enabling wind and solar power to displace fossil fuels more widely.
The Energy Department's Advanced Research Projects Agency – Energy (ARPA-E) has selected 66 cutting-edge research projects to receive $130 million in funding. These projects focus on transformational, breakthrough technologies that can produce game-changing breakthroughs in energy technology and have large commercial impacts.
Researchers unveil creative technologies to capture kinetic energy in Florida's oceans, convert waste thermal energy to electricity, and develop nanophosphor-based grow lights. These innovations could change our sources of energy and improve indoor agriculture.
A new study finds that efficient end-use technologies have the potential to contribute large emission reductions and provide higher social returns on investment. However, current innovation efforts are skewed towards energy supply technologies, which may be less effective in mitigating climate change.
Researchers at the University of Washington have developed a novel method for containing hot plasma using mug-handle-like coils, which require less energy than current methods. The new approach stabilizes the plasma, enabling more efficient fusion energy production.
Female leaders in clean energy were honored at the Women in Clean Energy Symposium, including C3E award winners who made significant contributions to policy, innovation, education, and corporate implementation. The event highlighted the importance of local initiatives in advancing national energy plans.
Researchers are developing molten-salt-based CSP heat transfer fluids with low melting points and low corrosivity to generate steam and electrical power efficiently and cost-effectively. The goal is to reach temperatures of up to 2,400 degrees Fahrenheit to overcome nocturnal drop in power generation capability.
Researchers in Dresden observed how electrons in individual quantum dots absorb energy and emit it as light. They used scanning near-field microscopy to excite electrons and measure their energy levels.
A team of three from Case Western Reserve University will demonstrate their 'Budget It Yourself' app, which tracks home electricity use and costs, at the Department of Energy's Energy Datapalooza. The app, developed with Android devices in mind, aims to help users budget their power consumption and costs via a smartphone.
The Dark Energy Camera, the most powerful sky-mapping machine ever created, has captured and recorded its first images in Chile. The camera will use data from the largest galaxy survey to study galaxy clusters, supernovae, and dark energy.
Nine Stanford researchers received seed grants to explore promising new technologies in clean energy and energy efficiency. These projects include the development of high-performance batteries, ultrathin solar cells, and methods for capturing atmospheric carbon dioxide. The research has the potential to impact energy production and use...
Experts surveyed by Near Zero identify reliability as the primary barrier to airborne wind energy, citing need for long-term stability in shifting winds. Government funding is seen as key to accelerating industry growth, with $10 million annual investment potentially cutting years off significant scale deployment.
A Tel Aviv University researcher has developed a control algorithm that optimizes energy collection from waves by predicting wave height and force. The system doubles the energy previously collected by Wave Energy Converters (WECs), making marine energy more competitive.
Researchers developed a self-charging power cell that converts mechanical energy into chemical energy, eliminating the need for separate generators and batteries. The device can harness mechanical energy from walking or other sources, generating enough current to power small electronic devices.
The NSF is providing $3 million to ASU to develop a doctoral program in energy and equip students with skills to address the energy challenges of the future. The Solar Utilization Network IGERT program will focus on four key research areas: biological conversion, photovoltaics, solar thermal, and sustainable policy.
A team of engineers at Washington University in St. Louis will receive $2 million to design a battery management system for lithium-ion batteries, guaranteeing their longevity and safety. The project aims to push the current technology to 100-percent efficiency while maintaining battery lifetime.
A USC-led team has developed an air-breathing battery that uses iron plates and oxygen to store energy, reducing energy loss by 4% and making it 10 times more efficient than previous models. The battery's capacity can store between 8-24 hours' worth of energy, with the potential to help California transition to renewable energy sources.