Researchers at NREL have improved the maximum voltage available from CdTe solar cells, breaking the 1V barrier and enabling more efficient electricity generation. The innovation could significantly reduce manufacturing costs and make solar energy more cost-competitive with traditional energy sources.
A new biorefinery process developed by NREL has significantly improved ethanol production from algae, with a yield of 126 gallons of gasoline equivalents per ton of biomass. The process, called Combined Algal Processing (CAP), reduces costs by nearly $10/GGE compared to traditional methods.
Researchers discovered a new type of enzyme assembly in C. thermocellum that allows the microorganism more freedom to explore for additional biomass, providing redundancy in its cellulolytic system. The findings have important implications for industry and could lead to cheaper production of cellulosic ethanol and other advanced biofuels.
Scientists at NREL found that certain defects can improve carrier collection and surface passivation of silicon solar cells. The study's results run counter to conventional wisdom and have implications for the development of more efficient solar cells.
The US Department of Energy has announced a significant investment in grid modernization research and development, with a focus on reducing carbon emissions and enhancing infrastructure security. The new funding will support critical research and development over the next three years to help modernize America's electrical power grid.
Researchers at NREL have developed a new approach to producing hydrogen using solar energy, which uses molecular catalysts instead of precious metals. The new method showed comparable activity to metal-based catalysts and has the potential to be scalable and cost-effective.
Researchers at NREL have developed a new photoelectrochemical process for producing hydrogen that uses molecular catalysts instead of precious metals. The new method is more efficient and cost-effective, making it a promising solution for scalable hydrogen production.
Scientists have discovered a major metabolic pathway in cyanobacteria that can efficiently convert carbon dioxide into organic compounds. The pathway, led by NREL scientists, has the potential to produce chemicals and biofuels from CO2 or plant biomass, reducing reliance on natural gas.
Scientists at NREL have developed a new probe to monitor the formation and decay of fields within photoelectrodes, enabling better understanding of their photophysics. This breakthrough could lead to improvements in the design of more efficient and stable photoelectrochemical cells for solar energy conversion.
Scientists at NREL have discovered a way to increase the efficiency of perovskite solar cells by reducing energy lost to heat. By utilizing hot-carrier solar cells, the potential efficiency limit increases from 33% to 66%. Perovskites are a class of materials with various technological applications.
Scientists at NREL have successfully produced ethylene through photosynthesis using cyanobacteria, a breakthrough that could reduce carbon dioxide emissions and provide an alternative to traditional fossil fuel-based production. The method has been improved significantly since its initial discovery in 2010, with the goal of increasing ...
Researchers at NREL have identified battery second-use strategies that can offset vehicle expenses while improving utility grid stability. Reusing Li-ion batteries can retain up to 70% of their initial capacity and provide a credit of $1,000 to car owners.
NREL is awarding up to $6.5 million in federal funds to technical teams across the US to test advanced control systems, smart consumer devices, energy storage, and emerging communications technologies for grid reliability and efficiency. The projects aim to accelerate modernization of the electric grid and enable a clean energy future.
The partnership aims to enhance the operation and development of testing facilities, enabling better understanding of wind turbine drivetrain systems. The collaboration will also promote public-private partnerships and workforce education in the energy industry.
The collaboration aims to provide diverse sources of investment for solar PV asset development in China, reducing future CO2 emissions. NREL will advise CPVFA on documentation standardization, data availability, and consistency in asset deployment.
NREL's Innovation and Technology Transfer Awards ceremony recognized professionals behind the lab's greatest innovations from FY14. Distinguished Innovator Min Zhang and Rising Stars Chuck Booten and John Simon were honored for their contributions to clean energy technology development.
A NREL report finds that shared solar programs can expand access to renewable energy, reaching 32-49% of the US distributed photovoltaic market in 2020. The program's structure and regulation impact its potential for deployment.
The Energy Department's National Renewable Energy Laboratory (NREL) and Idaho National Laboratory (INL) have successfully demonstrated the capability to connect grid simulations at their two labs for real-time interaction via the Internet. This new inter-lab capability enables the modeling of power grids in greater detail by allowing s...
The NREL has released updated guidelines for PV manufacturer quality assurance to ensure reliable performance of solar technologies. The guidelines, developed by an international task force, aim to maintain investor, utility, and consumer confidence in PV system performance.
The International PV Quality Assurance Task Force (PVQAT) aims to develop standards for PV module reliability, addressing climate zones and mounting configurations. Data from 50,000 solar systems shows a low failure rate of just 0.1% per year.
The NREL tool uses Battery Lifetime Analysis and Simulation Tool (BLAST) to evaluate unique scenarios and identify the most cost-effective energy storage system configurations. Small battery systems reducing peak demand by 2.5 percent offer the most attractive return on investment.
Two NREL reports analyze the economic options for financing commercial and residential solar energy systems. Analyzing banking opportunities in the US distributed photovoltaic market and examining commercial retailers' decisions on PV-financing strategies, the reports found that businesses can save up to 30% by using low-cost financing...
Researchers at NREL have developed a new process to convert lignin-derived compounds into adipic acid, an industrial dicarboxylic acid used in the production of nylon. This breakthrough has significant implications for the economic viability and environmental sustainability of biorefineries.
Testing at NREL aids solar power in Hawaii by quantifying transient LRO conditions, allowing HECO to increase its penetration limits for rooftop solar from 120% to 250% of minimum daytime load.
The 2013 Renewable Energy Data Book reports a significant increase in installed renewable capacity in the US. Key findings include solar electricity's rapid growth and renewable sources accounting for 23% of global electricity generation worldwide.
A recent NREL report examines the PV interconnection process in the US, revealing that delays can range from several days to months. The study found that streamlining application review and final authorization processes can benefit utilities and solar consumers by reducing time and cost associated with going solar.
The reports analyze consumer and commercial loan products available for financing solar in the US, showing that solar loans can be more affordable than third-party financing. Businesses can benefit from owning a PV system by saving on energy bills, but also assume risks associated with ownership.
Renewable electricity in the US grew to nearly 15% of total installed capacity and 13% of total electricity generation in 2013. Solar electricity was the fastest growing technology, with a 66% increase in cumulative installed capacity from the previous year.
Brian Gregg, a scientist at NREL, has been recognized by the American Association for the Advancement of Science (AAAS) for his work on organic solar photoconversion and excitonic solar cells. His research has led to new technologies such as photoelectrochromic windows that can automatically adjust to light levels.
Richard DeBlasio, Sarah Kurtz and Suhuai Wei have been named as new NREL Research Fellows to advise on the strategic direction of science and technology research at the laboratory. They bring extensive expertise in renewable energy, photovoltaics and computational materials science.
The National Renewable Energy Laboratory has demonstrated a four-junction solar cell with a conversion efficiency of 45.7%, surpassing previous records in photovoltaic research. The new design uses lattice-mismatched materials to achieve high efficiency and is suitable for concentrator photovoltaic systems.
The National Renewable Energy Laboratory (NREL) is providing critical support to two new microgrid projects, receiving over $8 million in funding. These projects aim to develop commercially-viable standardized microgrid controllers that can provide a reliable, affordable, and sustainable electricity supply.
A combination of foundational policies and localized strategies can increase solar photovoltaic installations in any state. States with matching policy suites to their unique context have excelled, while economic factors must also be favorable for third-party ownership models.
Researchers at NREL and SolarCity collaborate with Hawaiian Electric Companies to study distributed solar energy systems, using advanced modeling and inverter testing. The project aims to address operational issues and enable safe, reliable, and cost-effective grid integration of solar power.
The new Lab-Corps program aims to accelerate the commercialization of clean energy technologies from national laboratories to the marketplace. The program will partner with five national labs and provide funding, equipment, and expertise to help innovators bring their ideas to market.
The US Army and NREL have validated energy savings for net zero energy installations, reducing energy consumption by 25% and annual costs by up to $300 million. Six pilot sites achieved net zero energy, with varying approaches to energy efficiency and renewable energy production.
The HP Apollo 8000 platform uses warm water to cool its servers, reusing it to heat the building, reducing energy consumption by 74% and saving $1 million annually. The system's liquid cooling approach provides high computational density in a small space, setting a new standard for energy-efficient data centers.
The study shows solar energy prices dropping by 12-19% nationwide in 2013, with a projected further decline of 3-12% in 2014. This trend is expected to continue over the next couple of years, helping the nation meet its 2020 targets.
The Simulator for Wind Farm Applications (SOWFA) tool simulates complex variables to optimize wind farm energy production. It enables developers to improve individual turbine performance and reduce wake losses, potentially cutting costs by billions of dollars.
The National Renewable Energy Laboratory has released an updated compendium of experimental cetane numbers, which provides vital information for the development of new, low-carbon fuels and compatible engines. The update includes additional measurements on a larger number of compounds, along with data quality assessments.
The new epitaxial system produces up to 500 wafers per hour, reducing wafer cost to 13 cents per watt and potentially making solar energy more competitive with fossil fuels. The technology has the potential to create American jobs and stem the flow of solar cell manufacturing overseas.
A new study from NREL demonstrates a concept for converting lignin into various renewable fuels, chemicals, and materials. The process uses integrated biological funneling and chemical catalysis to overcome the heterogeneity of lignin.
NREL researchers Art Nozik and Keith Emery have been included in the Thomson Reuters' Highly Cited Researcher list, citing over 22,000 and 10,000 times respectively. Their work has greatly increased solar cell efficiency and established NREL as a leader in photovoltaics measurements.
NREL's commercialization strategy and partnering approach enable technology transfer to the market. The lab has more CRADAs than any other national laboratory, including a partnership with GeoSolarHeat to license its transpired solar collector technology for poultry farms.
NREL's breakthroughs in silicon solar cells and ultra-efficient supercomputers have been recognized by the R&D Magazine with two prestigious awards. The innovative growth system produces thin solar cells at half the cost and 100 times the speed of conventional epitaxial reactors.
The ESIF's Peregrine supercomputer can perform a quadrillion calculations per second, facilitating the development of modern energy systems integration. The facility enables on-site and remote viewing of experimental data, allowing researchers to ask 'what if' questions and optimize system design.
The National Renewable Energy Laboratory (NREL) has developed office and laboratory spaces that demonstrate high-performance, sustainable building designs and constructions. The campus features facilities with best-in-class energy efficiency and sustainability practices.
Researchers at NREL created high-performance, binder-free electrodes using carbon-nanotube-based materials to improve battery life and performance. The technology has attracted interest from industry and is being licensed for volume production.
The partnership aims to advance fuel cell materials and manufacturing technologies, reducing costs while improving performance and durability. The collaboration will focus on critical next-generation challenges, including platinum loading reduction and hydrogen system development.
A new report by NREL found that Concentrated Solar Power (CSP) projects add a value of 5-6 cents per kilowatt hour in California, where renewables will reach 33% by 2020. CSP helps maintain firm capacity and reduces curtailment of variable generation technologies.