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The US Department of Energy (DOE) has begun work on the GridStorage Launchpad (GSL), a $75-million facility located at Pacific Northwest National Laboratory (PNNL) in Richland, Washington that will boost clean energy adaptation and accelerate the development and deployment of long-duration, low-cost gridenergystorage.
The US Department of Energy is awarding $620 million for projects around the country to demonstrate advanced Smart Grid technologies and integrated systems. Smart grid regional demonstrations involving plug-in vehicles include (ranked by DOE funding): Columbus Southern Power Company (doing business as AEP Ohio).
The US Department of Energy’s Advanced Research Projects Agency-Energy (ARPA-E) has selected 19 new projects to receive a total of $43 million to develop breakthrough energystorage technologies and support promising small businesses. Advanced Management And Protection Of Energy-Storage Devices (AMPED).
Honda has joined a demonstration project for experimental vehicle-to-grid (V2G) technology aimed at providing a potentially valuable energystorage resource to the electrical grid while providing for more cost-effective ownership of plug-in electric vehicles. through their eV2g joint venture ( earlier post ).
A plot of ESOI for 7 potential grid-scale energystorage technologies. Benson from Stanford University and Stanford’s Global Climate and Energy Project (GCEP) has quantified the energetic costs of 7 different grid-scale energystorage technologies over time. Credit: Barnhart and Benson, 2013.
Researchers from the US Department of Energy’s (DOE) SLAC National Accelerator Laboratory and Stanford University have designed a new lithium/polysulfide (Li/PS) semi-liquid (flow) battery for large-scale energystorage, with lithium polysulfide (Li 2 S 8 ) in ether solvent as a catholyte and metallic lithium as an anode.
million in matching grants from the state’s new Clean Energy Fund to lead energystorage projects with ties to federally funded research at the Department of Energy’s Pacific Northwest National Laboratory (PNNL). The total cost for the three smart grid demonstration projects is $35.3 was awarded $3.8
Under current policies, home energystorage systems would also often increase carbon emissions, according to a study by a team of researchers at the University of California San Diego published in the journal Environmental Science & Technology. —Ryan Hanna, postdoc at the School of Global Policy and Strategy. 8b03834.
Scientists at USC have developed a novel water-based Organic Redox Flow Battery (ORBAT) for lower cost, long lasting large-scale energystorage. Since grid-scale electrical energystorage requires hundreds of gigawatt-hours to be stored, the batteries for this application must be inexpensive, robust, safe and sustainable.
The US Department of Energy’s National Energy Technology Laboratory (NETL) is conducting research on alternative options to reduce costs and make large-scale energystorage safer and more practical. Innovative fabrication methods can also lead to significant energystorage system improvements.
has been awarded a firm contract with the Hawai’i Natural Energy Institute (HNEI) of the University of Hawai’i at Manoa to supply a one-megawatt ALTI-ESS energystorage system for a test of wind energy integration. Altair Nanotechnologies, Inc. Earlier post.).
Schematic of the “New Grid Testbed” components, including renewable energy generation, energystorage, smart distribution and electric transportation Click to enlarge. It is the largest renewable energy project of its kind in California. Two megawatt-hours of battery energystorage. Solar carport.
The New York State Energy Research and Development Authority (NYSERDA) has awarded $250,000 to each of eight companies and research centers to develop working prototypes for a wide range of energy-storage technologies. The recipients are all members of the NY Battery and EnergyStorage Technology ( NY-BEST ) Consortium.
The California Center for Sustainable Energy (CCSE) will lead a joint research study of how the useful lifespan of electric vehicle batteries could be extended by repurposing them as household electric storage devices with a $992,000 grant from the University of California. of Monrovia, Calif.; Flux Power of Vista, Calif.;
Raising the penetration of renewable —an intermittent—sources of energy into the grid will require large scale electrical energystorage and retrieval. However, at present, no existing technology provides such storage and retrieval at a low financial and environmental cost.
is the energystorage partner for a utility demonstration project led by CEATI International Inc., Other partners include major utilities and universities. The project has been conditionally approved for partial funding support from the Government of Canada’s Clean Energy Fund and final contract negotiations are underway.
The New York State Energy Research and Development Authority (NYSERDA) will award $8 million to help develop or commercialize 19 advanced energystorage projects. Integrating battery and ultra-capacitors on a common power circuit serving two renewable-energy generation sources. City University of New York.
Toshiba Corporation will supply the battery for the United Kingdom’s first 2MW scale lithium-titanate battery based EnergyStorage System (ESS) to support grid management. The ESS will be connected to the 11kV grid at Western Power Distribution’s Willenhall primary substation, near Wolverhampton in the West Midlands.
Siemens Energy, Duke Energy and Clemson University have teamed up to study the use of hydrogen for energystorage and as a low- or no-carbon fuel source to produce energy at Duke Energy’s combined heat and power plant located at Clemson University in South Carolina.
Researchers at WMG, University of Warwick, have repurposed end-of-life electric vehicle batteries as small energystorage systems (ESS) for off-grid locations in developing countries or isolated communities. —Professor James Marco.
Yi Cui has developed nanoparticle copper hexacyanoferrate (CuHCF) battery cathode materials that demonstrate long cycle life and high power for use in gridstorage applications. Short-term transients, including those related to wind and solar sources, present challenges to the electrical grid. A team at Stanford led by Prof.
ion Ventures, a modern utility and energystorage infrastructure specialist, and LiNa Energy , a solid-state battery technology developer, concluded their first successful trial of LiNa’s proprietary solid-state sodium-nickel battery platform at an undisclosed location in South East England last week.
EVgo, America’s largest public fast-charging network for electric vehicles (EVs), has launched a commercial installation of second-life battery storage at a public DC fast charging station. BMW provided the recycled energystorage packs from BMW i3s and continues to provide ongoing technical support.
The two discrete projects—ELEVATE (ELEctrochemical Vehicle Advanced Technology) and Ultra Efficient Engines and Fuels—will involve academics from eight UK universities. Other participating academic partners are: University of Warwick; University of Southampton; University College London; and University of Oxford.
The US Department of Energy’s Argonne National Laboratory and Mississippi State University (MSU) are collaborating to develop new technologies that address next-generation energystorage challenges. New discoveries could enhance the load-balancing capabilities of the grid in the Southeast region.
Researchers at the Department of Energy’s Pacific Northwest National Laboratory (PNNL) and Bonneville Power Administration (BPA) have identified two compressed air energystorage methods for the temporary storage of the Northwest’s excess wind power and two eastern Washington locations to put them into practice.
A team from Stanford University led by Prof. Yi Cui has demonstrated a new type of safe, fast, inexpensive, long-life aqueous electrolyte battery targeted an grid-scale storage. The high-rate, high-efficiency cell has a 95% round-trip energy efficiency when cycled at a 5C rate, and a 79% energy efficiency at 50C.
The challenges involved in getting EV chargers hooked up to the grid are well-known to Charged readers. Various off-grid solutions are available, but the best approach may be a flexible one—using some combination of onsite generation, battery storage and grid power, according to what’s available and what’s needed for the application.
In October 2008, Xcel began testing a one-megawatt sodium-sulfur (NaS) battery ( earlier post ) to demonstrate its ability to store wind energy and move it to the electricity grid when needed. The preliminary test results indicate that the battery has the ability to: Effectively shift wind energy from off-peak to on-peak availability.
Balqon Corporation, a developer of heavy-duty electric vehicles, drive systems and lithium-ion battery storage devices, has installed a one MWh lithium-ion battery storage system at the University of California, Riverside (UCR); the system has gone operational, providing electric power to the Bourns College of Engineering building.
The ultimate aim of the research is to facilitate improvements in batteries used for transport and other applications such as gridstorage with improved performance and cost characteristics. The project’s Principal Investigator is Professor Patrick Grant of the University of Oxford. Next generation lithium ion cathode materials.
A vehicle-to-grid (V2G) project between the University of Delaware and NRG Energy has begun selling power to PJM Interconnection for the power grid. Frequency regulations is used to balance supply and demand on the grid second-by-second. Earlier post.). Earlier post.). — Michael J.
Sand is emerging as a key ingredient in the race to develop a viable electricity storage system for renewable energies. Australia-based Latent Heat Storage has developed a low cost thermal energystorage system based on the latent heat properties of silicon derived from sand. —Jonathan Whalley.
BMW i announced a home stationary energystorage system solution integrating its BMW i3 vehicle battery at EVS 29 in Montréal. BMW i has worked with universities, national laboratories, utilities and industry partners to maximize residential energy efficiency.
As part of the collaboration, Honeywell will purchase 19 GWh of battery cells produced by FREYR from 2023 through 2030 for a multitude of energystorage systems applications. Battery EnergyStorage Systems (BESS) technology development is critical to the continued decarbonization of global power systems.
Hydrogen demand is currently concentrated in oil refining and ammonia production, but nearly 90% of projected demand growth through 2050 comes from new sectors like heavy-duty transportation, steel production, and long-term energystorage.
Researchers at the US Department of Energy’s National Renewable Energy Laboratory (NREL) released a technical report that provides an interim test plan for evaluating vehicle-to-grid (V2G) applications. The global vehicle-to-grid (V2G) market is expected to grow at a rapid pace, reaching the $2.25 1547 tests. Kroposki, G.
and Soitec will collaborate on a California Energy Commission-funded, two-phase program to demonstrate the cost and efficiency benefits of combining an energystorage system with Soitec’s Concentrix CPV (concentrated photovoltaic) technology. Maxwell Technologies, Inc. Maxwell was awarded a $1.39-million
The University of Delaware has signed the first license for its vehicle-to-grid (V2G) technology with AutoPort, Inc., If the initial test is successful, and V2G vehicles are subsequently manufactured, the University would receive a royalty for each vehicle sold with V2G equipment. Vehicle to Grid Technology (Univ.
The work was conducted by a collaboration including industrial partners Arup, Dearman Engine Company, E4 Tech, Highview, Messer Group and Ricardo, as well as academics from the Universities of Leeds, Birmingham, Strathclyde, Brighton and Imperial College London. Williams, University of Birmingham. Jonathan Radcliffe and Prof.
Results of a study by a team at the Hawaii Natural Energy Institute, SOEST, University of Hawaii at Manoa, suggest that the additional cycling to discharge vehicle batteries to the power grid in a vehicle-to-grid (V2G) scenario, even at constant power, is detrimental to EV battery cell performance. 2017.05.015.
Power is transferred by creating a magnetic resonance field between the transmitting pad on the ground (wired to the grid) and a receiving pad fitted on the underside of the vehicle. The energy crosses an air gap (the ground clearance between the pads) and is then converted from AC into DC on the vehicle to charge the vehicle batteries.
Energy Research Center at RWTH Aachen University, E.ON electric utility company, battery manufacturers Exide and beta-motion and inverter manufacturer SMA Solar Technology AG (SMA) have joined forces to build the first multi-technology, modular large-scale 5MW battery storage system. The M5BAT project is backed by a €6.5-million
The new ARPA-E selections focus on accelerating innovations in clean technology while increasing US competitiveness in rare earth alternatives and breakthroughs in biofuels, thermal storage, grid controls, and solar power electronics. million in funds to approximately 120 energy projects within seven program areas. light energy.
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