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FREYR to collaborate with Honeywell on battery manufacturing, deploying energy storage solutions

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As part of the collaboration, Honeywell will purchase 19 GWh of battery cells produced by FREYR from 2023 through 2030 for a multitude of energy storage systems applications. Battery Energy Storage Systems (BESS) technology development is critical to the continued decarbonization of global power systems.

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Two EVs at Plymouth State University delivered 1 MWh over 6 months with Fermata Energy bidirectional charging platform

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Two Nissan LEAF electric vehicles (EVs) at the Plymouth State University (PSU) provided 1 MWh of energy to the PSU’s ALLWell Center, offsetting some of the building’s electricity needs, over a six-month period. Unidirectional charging is also an unpredictable electricity demand that utilities need to manage and plan for.

Universal 221
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ARPA-E awards $43M to 19 energy storage projects to advance electric vehicle and grid technologies

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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 energy storage technologies and support promising small businesses. Advanced Management And Protection Of Energy-Storage Devices (AMPED).

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Sandy solution for renewable energy storage; Thermal Energy Storage System

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Australia-based Latent Heat Storage has developed a low cost thermal energy storage system based on the latent heat properties of silicon derived from sand. The TESS device stores electricity as thermal energy by heating and melting containers full of silicon. —Jonathan Whalley. —Jonathan Whalley.

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EVgo launches grid-tied public fast charging system with second-life batteries

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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. —Austin Brown, Executive Director of the UC Davis Policy Institute for Energy, Environment and the Economy.

Grid 240
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Altris presents high-capacity Prussian White cathode material for Na-ion batteries; 160 mAh/g

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This marks an important milestone on Altris’ commercialization journey, as the capacity of cathode materials is crucial to increase the energy density and deployment of sodium-ion batteries. This makes the battery cell commercially viable for applications such as grid energy storage connected to renewable energy production.

Sodium 284
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Faraday Institution to award up to £55M to five consortia for energy storage research

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The ultimate aim of the research is to facilitate improvements in batteries used for transport and other applications such as grid storage 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.