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Electrify America recently unveiled its first application of a megawatt-level battery energystorage system (BESS) for electric vehicle (EV) charging stations, building upon the company’s existing BESS installations at more than 150 stations across the US, including more than 100 installations in California.
Energy Vault, a company developing grid-scale gravity energystorage solutions, has entered into an energystorage system agreement with DG Fuels, a developer of renewable hydrogen and biogenic-based, synthetic sustainable aviation fuel (SAF) and diesel fuel. barrel per ton of feedstock.
ŠKODA AUTO, a subsidiary of the Volkswagen Group, is introducing a smart energystorage system using second-life batteries from electric vehicles. The system stores sustainably generated electricity in used batteries that come from the all-electric SUV ŠKODA ENYAQ iV as well as the plug-in hybrid models SUPERB iV and OCTAVIA iV.
Electrify America has installed onsite, behind-the-meter battery energystorage systems (BESS) at more than 140 ultra-fast DC charging stations around the country, including more than 90 installations in California.
A composite blend of carbon fibers and polymer resin is being developed that can store and charge more energy faster than conventional batteries can. The material combines carbon fibers and a polymer resin, creating a very advanced nanomaterial, and structural supercapacitors. Click to enlarge. Click to enlarge.
A fast, green and one-step method for producing porous carbon spheres—a component for carbon capture technology and for new ways of storing renewable energy—has been developed by Swansea University researchers. Carbon spheres range in size from nanometers to micrometers. at 0 °C and 2.9 at 0 °C and 2.9
Ford Motor Company is expanding its MyEnergi Lifestyle program ( earlier post ), announced at last year’s CES, to include home energystorage. will demonstrate the benefits of integrating additional tools, such as the ability to storeenergy within the home after it is captured by solar panels.
New research by MIT scientists suggests that carbon nanotubes could be used to create elastic energystorage systems with energy densities that could be three orders of magnitude higher than those of conventional steel springs, and comparable to Li-ion batteries with potentially more durability and reliability.
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.
UC Riverside (UCR) engineers have developed a way to recycle PET (polyethylene terephthalate) plastic waste, such as soda or water bottles, into a nanomaterial useful for energystorage. An open-access paper on the work is published in the journal EnergyStorage. Mihri Ozkan & Cengiz Ozkan/UCR).
Researchers from Huazhong University of Science and Technology in China and George Washington University in the US report in a new paper in the ACS journal Accounts of Chemical Research that a range of important carbon nanomaterials can be produced at high yield by molten carbonate electrolysis.
BC Hydro has selected S&C Electric Company, a renewable energy integration company, for a sodium-sulfur (NaS) battery energystorage project intended to improve service reliability for a remote mountain community in British Columbia.
The system consists of three components: the spring-assisted spherical TENG; an energystorage circuit with rectifiers and a supercapacitor; and a two-electrode electrochemical cell for CO 2 RR and OER. have reported the designed charging cycle can significantly improve the energy-storage efficiency up to 50%.
This fuel mixture will reduce carbon emissions by more than 75% compared to the retiring coal-fired technology. Between 2025 and 2045, the hydrogen capability will be systematically increased to 100% renewable hydrogen, enabling carbon-free utility-scale power generation. and Hitachi, Ltd.
Researchers at MIT are proposing using a variation on pumped hydroelectric systems for storage of electricity produced by offshore wind farms. The key to this Ocean Renewable EnergyStorage (ORES) system is the placement of 30-meter-diameter hollow concrete spheres on the seafloor under the wind turbines. Slocum, A.H.;
(MHI), jointly with SSE plc (formerly Scottish and Southern Energy plc), will begin an energystorage system demonstration project using the power grid in the UK’s Orkney Islands, which has a high proportion of renewable energy generation in relation to demand.
The US Department of Energy is awarding $620 million for projects around the country to demonstrate advanced Smart Grid technologies and integrated systems. The selected projects include advanced battery systems (including flow batteries), flywheels, and compressed air energy systems. Tehachapi Wind EnergyStorage Project.
Skeleton Technologies , an energy-storage start-up located in Tartu, Estonia, was recently awarded a US patent ( #7,803,345 ) on its nanoporous carbon powder supercapacitor material. This allows increased access to nanopores by the liquids, in turn raising the energy density. million in 2011 to $284.1
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.
Mitsubishi Electric Corp has demonstrated prototypes of a hybrid energystorage cell that combines the fast charge-discharge power capabilities and long life of an EDLC (electric double layer capacitor) and the greater energystorage capacity of a Li-ion battery in a single cell. The anode is made with carbon material.
A chart from EnerG2’s 2012 DOE Merit Review presentation shows different pore profiles for different energystorage applications. Engineering surface area, pore size distribution, and total pore volume can deliver carbon material with a broad range of surface properties. Click to enlarge.
Classification of potential electrical storage for stationary applications. published in the ACS journal Chemical Reviews , reviews in detail four stationary storage systems considered the most promising candidates for electrochemical energystorage: vanadium redox flow; sodium-beta alumina membrane; lithium-ion; and lead-carbon batteries.
Ricardo’s TorqStor high speed flywheel energystorage technology ( earlier post ) has been selected to receive the SAE Tech Award, as one of the top five technologies to be on display at the SAE World Congress 8-10 at the COBO Center, Detroit. Ricardo’s TorqStor. Click to enlarge.
Molecular photoswitches that can both convert and storeenergy could be used to make solar energy harvesting more efficient. The procedure was based on a dataset of more than 400,000 molecules, which the researchers screened to find the optimum molecular structure for solar energystorage materials.
KTSi trackside flywheel systems provide voltage support to overtaxed sections of electric rail systems, eliminating slowdowns, as well as capturing, storing and reusing the regenerative braking energy of rail cars. Vacuum cabinet, flywheel cylinder and drive cabinet of Kinetic EnergyStorage System (KESS).
At its recent “Kia Sustainability Movement” virtual presentation, Kia Corporation announced a commitment to achieve carbon neutrality throughout its value chain by 2045. Achieving carbon neutrality will be based on three key pillars: Sustainable Mobility; Sustainable Planet; and Sustainable Energy. Earlier post.).
Researchers from MIT and Harvard University have developed a material that can absorb the sun’s heat and store that energy in chemical form, ready to be released again on demand. In effect, they behave as rechargeable thermal batteries: taking in energy from the sun, storing it indefinitely, and then releasing it on demand.
VYCON, a designer and manufacturer of flywheel kinetic energystorage systems, has completed delivery of its kinetic energystorage system at the Los Angeles Metro Red Line Westlake/MacArthur Park station.
Mitsubishi Power Americas and Texas Brine Company are collaborating to develop large-scale long-duration hydrogen storage solutions to support decarbonization efforts across the eastern United States. Long-duration hydrogen storage is a key enabling technology for the transition to a net zero carbonenergy future.
The US Department of Energy announced $11.5 million in funding for 12 projects as part of Phase 1 of the Advanced Research Projects Agency-Energy’s (ARPA-E’s) FLExible Carbon Capture and Storage (FLECCS) program. Synergistic Heat Pumped Thermal Storage and Flexible Carbon Capture System - $1,000,000.
The US Department of Energy (DOE) has finalized a $43-million loan guarantee for Beacon Power Corporation’s 20 megawatt innovative flywheel energystorage plant in Stephentown, NY. The technology operates by using flywheels to quickly store and release from the grid in order to follow rapid changes in grid demand.
Carbon fibers have already beeen demonstrated as high-capacity Li-ion battery anodes, opening the way for their use as structural electrodes—i.e., simultaneously carrying mechanical load and storing electrical energy. The researchers studied the microstructure of different types of commercially available carbon fibers.
Researchers from Imperial College London and their European partners, including Volvo Car Corporation, are developing a prototype multifunctional structural composite material composed of carbon fibers and a polymer resin which can store and discharge electrical energy and which is also strong and lightweight enough to be used for car parts.
FlyZero is the UK’s Aerospace Technology Institute (ATI) project aiming to realize zero-carbon emission commercial aviation by 2030. Funded by the Department for Business, Energy and Industrial Strategy, the project FlyZero began in early 2021 as an intensive research project investigating zero-carbon emission commercial flight.
Altairnano has signed a Memorandum of Understanding (MoU) with Shenhua Science & Technology and its research affiliate, the National Institute of Clean and Low-carbonEnergy (NICE), jointly to develop, deploy and promote industrial applications of lithium titanate-based energystorage systems in China.
Friend Family Distinguished Professor of Engineering, have been exploring the use of low-cost materials to create rechargeable batteries that will make energystorage more affordable. A paper on the work is published in Nature Energy. This magnified image shows aluminum deposited on carbon fibers in a battery electrode.
The UK government is awarding £54 million to 15 projects to develop technologies that remove carbon emissions from the atmosphere. The carbon dioxide can then be permanently stored or used in various products or applications. The biochar is rich in carbon and can be used as a fertilizer. Cambridge Carbon Capture Ltd.,
A new new forum for the advocacy and development of liquid air as an alternative technology to harness waste and surplus energy within power and transport—the Liquid Air Energy Network (LAEN)—has formed in the UK. The main potential applications are in electricity storage, transport and the recovery of waste heat.
MAN Diesel & Turbo Schweiz AG has signed a cooperation agreement with ABB Switzerland for the development, production and commercialization of a three-way energy-storage system. The new Electro-Thermal EnergyStorage system (ETES) stores large-scale electricity, heat and cold for distribution to consumers.
(SoCalGas) will work with the US Department of Energy’s (DOE’s) National Renewable Energy Laboratory (NREL) on an innovative green hydrogen storage solution. GKN Hydrogen’s HY2MEGA can enable safe, long duration clean energystorage without the need for compression. Supported by $1.7
The study, which provides a joint industry analysis of how different types of batteries are used in different automotive applications, concludes that lead-based batteries will by necessity remain the most wide-spread energystorage system in automotive applications for the foreseeable future.
Teaming up with Sunrun leverages their expertise to bring solar power to even more customers, giving them the chance to turn their truck into an incredible energystorage source —and future truck features can help accelerate the development of a less carbon-intensive grid.
Electrochemical reduction of carbon dioxide (CO 2 ) is a promising approach to solve both renewable energystorage and carbon-neutral energy cycle. C 2+ alcohols are desirable due to their high energy densities and large global market capacities.
This translates to an energy enhancement ~4 times greater than the state-of-the-art lithium intercalation compounds such as LiCoO 2 (~600 W h kg electrode -1 , the researchers said. They report on their study in a paper published in the RSC journal Energy & Environmental Science. Energy Environ. —Mitchell et al.
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