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Southwest Research Institute (SwRI) has launched a new Joint Industry Program (JIP) to investigate energy storage systems for the grid. One of the central questions is how long it takes for a battery to degrade. Over the course of its life, a grid-connected battery must respond slowly or suddenly, depending on the grid demands.
ion Ventures, a modern utility and energy storage 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.
The first charging station for EVs that uses energy storage based on second-life batteries from Irizar e-mobility is up and running. Irizar e-mobility and Ibil earlier signed a collaboration agreement to give a second life to electric bus batteries. The power of the grid needed to provide services is reduced by 70%.
Solid-state sodium-ion battery company LiNa Energy ( earlier post ) successfully completed an independent demonstration of its lithium-free sodium batteries for energy storage systems with commercial partner ion Ventures.
With existing and forthcoming emissions mandates, DANNAR and Nuvera would be able to meet the needs of organizations and industries seeking clean energy options for mobility. can provide up to a half Megawatt of energy storage in its high-capacity BMW lithium-ion battery packs. Nuvera is a subsidiary of Hyster-Yale Group, Inc.,
The US Department of Energy (DOE) has begun work on the Grid Storage 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 grid energy storage.
Northvolt and Mälarenergi are partnering to establish a battery energy storage system at an electric vehicle charging station in Västerås, Sweden. The battery system will provide power output up to 220 kW and a usable energy capacity of 320 kWh. —Emad Zand, President Energy Solutions, Northvolt.
With battery storage able to provide a unique role in balancing a renewable electricity grid, Toby Gill, CEO of Intelligent Power Generation, asks could innovations in green hydrogen and biofuel technologies contribute to a more optimized and economical energy mix? Our grid is changing, and so must the way we operate it.
JenaBatteries GmbH and BASF are cooperating in the production of an electrolyte for a battery technology that is particularly suitable for stationary storage of electricity from renewable energy sources and for stabilizing conventional transmission grids. BASF will supply one of the two electrolytes as part of the collaboration.
The QCA7006AQ is compliant with the Home Plug Green PHY (HPGP) specification, which is the leading specification for implementing Vehicle-to-Grid (V2G) systems. —Lars Boeryd, Sr. Director Product Marketing, Automotive at Qualcomm Technologies.
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.
China dominates BloombergNEF’s (BNEF) lithium-ion battery supply chain ranking in 2020, having quickly surpassed Japan and Korea that were leaders for the majority of the previous decade. While both countries are leaders in battery and components manufacturing, they do not have the same influence in raw materials refining and mining as China.
Global Power Synergy PLC (GPSC) is building a battery manufacturing facility in Thailand using 24M’s novel SemiSolid lithium-ion technology ( earlier post ). In May 2019, 24M delivered 40 grid-scale, 110 Amp-Hour (Ah) li-ion cells to GPSC. GPSC is the main power and utility company of PTT Group. GPSC is a long-time partner of 24M.
Elli, a brand of the Volkswagen Group, and MITNETZ STROM have launched a nationwide pilot project for smart grid integration of electric vehicles. An algorithm uses price incentives to compare the cars’ charging plans with regional electricity output from renewable energies and the available capacities in the distribution grid.
In a recent analysis, Fraunhofer ISI concludes that battery-electric drives will become established in heavy-duty applications in the commercial vehicle sector and that fuel cells will remain a niche application. The decisive factor for the switch to battery-electric vehicles is the energy cost advantage compared to hydrogen and diesel.
announced the renewal of the Industrial Mining Licence for the Malsiripura, M1 mining project in Sri Lanka (known as Ceylon until 1972) from the Geological Survey and Mines Bureau (GSMB). Vancouver-based Ceylon Graphite Corp. The Licence grants exclusive rights to mine graphite from within the M1 mining area.
More than two-thirds (68%) of lithium-ion battery production planned for Europe is at risk of being delayed, scaled down or cancelled, according to new analysis by the European NGO Transport & Environment. Battery production capacity equivalent to 18 million electric cars—1.2 Europe must act or risk losing it all.
The CEO and General Manager of Terna, Luigi Ferraris, and the Chief Operating Officer of Fiat Chrysler Automobiles (FCA) in EMEA, Pietro Gorlier, signed a Memorandum of Understanding for the joint trialing of sustainable mobility services and technologies such as Vehicle-to-Grid (V2G).
Rolls-Royce has been awarded a contract to supply and install a large-scale mtu EnergyPack QG battery storage system on a turnkey basis to the Dutch energy company Semper Power in Vlissingen. Semper Power develops and operates energy storage systems for wind and solar farm developers, distribution grid operators and industrial customers.
This RFI is being jointly issued by EERE’s Vehicle Technologies Office and OE’s Advanced Grid Research and Development Division. Through this RFI, DOE is soliciting input in five categories: An evaluation of the use of EVs to maintain the reliability of the electric grid. The impact of grid integration on EVs.
StoreDot, the developer of extreme fast charging (XFC) battery technology for electric vehicles (EVs), says that it has developed advanced technology that extends the lifespan of batteries, making them highly effective not only during the vehicle lifespan, but also for second-life applications.
BYD introduced its Type A battery-electric school bus that also offers innovative vehicle-to-grid technology, allowing the vehicle to serve as a power storage resource when it’s not transporting students. At the heart of the BYD Type A is its lithium iron phosphate battery, the safest and most reliable in the electric vehicle industry.
Audi has opened Germany’s largest multi-use battery energy storage unit on the EUREF Campus in Berlin. MWh and uses used lithium-ion batteries from development vehicles to test various interaction scenarios between electric cars and the power grid. Audi is cooperating with partners from the energy industry (e.g.
EPIC funds are competitively awarded to support the most promising technologies and approaches across six investment areas: the entrepreneurial ecosystem; resilience and safety; building decarbonization; grid decarbonization and decentralization; industrial and agricultural innovation; and low-carbon transportation.
Japan’s New Energy and Industrial Technology Development Organization (NEDO), Toshiba Energy Systems & Solutions Corporation (Toshiba ESS), Tohoku Electric Power Co., Hydrogen produced at FH2R will also be used to power stationary hydrogen fuel cell systems and to provide for the mobility devices, fuel cell cars and buses, and more.
Natron Energy, a manufacturer of sodium-ion batteries, and Clarios International Inc., a manufacturer of low-voltage advanced battery technologies for mobility, will collaborate to manufacture the first mass-produced sodium-ion batteries. Natron has spent 10 years developing sodium-ion battery chemistry for mass manufacturing.
The partnership is part of Europe’s strategic industry initiative, the European Battery Alliance, aimed at building an independent, sustainable, and resilient batteryindustry in Europe. Europe is already the fastest growing lithium-ion battery production center in the world, with zero local supply of lithium hydroxide.
billion to 21 projects to expand domestic manufacturing of batteries for electric vehicles (EVs) and the electrical grid and for materials and components currently imported from other countries. The US Department of Energy (DOE) is awarding a combined $2.8 Earlier post.) Of that, $1.16 Applied Materials, Inc.
Globally, the batteryindustry needs to invest at least $514 billion across the whole supply chain to meet expected demand in 2030, and $920 billion by 2035, according to a new analysis by Benchmark. Demand for lithium ion batteries is forecast to grow to 3.7 However, batteries are the fastest-growing demand market for nickel.
and Proterra celebrated the delivery of the 50 th Saf-T-Liner C2 Jouley battery-electric school bus. The first of these buses, which represent the first battery-electric buses in Virginia, were delivered in November of 2020. TBB and Proterra unveiled the high-performance Jouley electric school bus in 2018.
The European Commission is proposing modernizing EU legislation on batteries; this would be the first initiative delivered among the actions announced in the new Circular Economy Action Plan. The proposal addresses the social, economic and environmental issues related to all types of batteries.
Distributing grid operational decision-making is revolutionary. These technologies rely on established cryptography and consensus mechanisms to ensure transactions remain secure, and an entire industry has emerged to apply blockchain technology in resolving real-world challenges. Everyone would have laughed at you.
The Federal Consortium for Advanced Batteries (FCAB) ( earlier post ) has released the National Blueprint for Lithium Batteries 2021–2030 to guide investments in the urgent development of a domestic lithium-battery manufacturing value chain. Stimulate the US electrode, cell, and pack manufacturing sectors.
GWP processing routes using both grid-mix electricity and renewable electricity were evaluated in-line with LCA best-practice and Global Battery Alliance requirements for the battery passport. For HPMSM produced in China via EMM dissolution, the main contributor is the same: embodied emissions in the electricity grid mix.
billion to 21 projects to expand domestic manufacturing of batteries for electric vehicles (EVs) and the electrical grid and for materials and components currently imported from other countries. The US Department of Energy (DOE) is awarding a combined $2.8 Earlier post.) Of that, $1.6
SolarEdge Technologies and SolarEdge’s subsidiary, Kokam Limited Company, a provider of lithium-ion batteries and integrated energy storage solutions, announced the opening of “Sella 2”, a two gigawatt-hour (GWh) battery cell manufacturing facility. The opening of Sella 2 is an important milestone for SolarEdge.
The BMW Group has pooled its years of experience with battery cells and extensive knowledge in the field in a new Competence Center in Munich. The purpose of the facility is to advance battery cell technology and carefully dissect the production processes. The new Battery Cell Competence Center puts us in an enviable position.
The SAE J2954 Wireless Power Transfer and Alignment Taskforce worked since 2007 to thoroughly vet and test the technology, in partnership with government agencies, regulatory bodies and private-industry groups including the American Association of Medical Instrumentation (AAMI), US Dept. of Energy (DoE), the U.S. SAE J2954).
a battery startup with exclusive licenses to produce domestic cobalt-free lithium batteries ( earlier post ), has won a grant for $2.6 million from the California Energy Commission (CEC) to extend its development into solid-state batteries. SPARKZ Inc., SPARKZ will begin pilot-testing with its OEM partners in early 2022.
The all-electric Type A school buses each will have a gross vehicle weight of 14,500 pounds and will feature NMC batteries using industry-leading battery thermal management and safety systems. The buses will support both Level 2 AC charging and Level 3 DC fast charging, with integrated vehicle-to-grid (V2G) capabilities.
Battery-swapping technology aims to address the shortcomings of conductive fast-charging. These include long dwell times, high power demand from the grid, availability and reliability issues, and the need for end-users to deal with heavy cables, dirty connectors, and buggy user interfaces. Nio Power Swap stations.
SiFAB is a proprietary silicon anode battery technology developed by Unifrax which enables significantly greater energy density in lithium-ion battery systems than prevailing technologies. SiFAB can be mixed into anode slurry with existing battery manufacturing processes. Source: Unifrax.
Providing up to 3MW of power from a single connector, the MCS is a turnkey DC charging solution with grid-to-inlet functionality that supports the decarbonization of industrial vehicles and ships. Cavotec designs and delivers connection and electrification solutions to enable the decarbonization of ports and industrial applications.
EV Connect, a California-based software-as-a-service company, is collaborating with the Indiana-based Battery Innovation Center (BIC) and Energy Systems Network (ESN) to deploy Indiana’s first large-scale Vehicle-to-Grid capable charging system to support school bus fleet, HD truck, and other customer segment applications.
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