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Green Crossover Project in Japan Showcases Li-ion Stationary Storage for EV Charging; EnerDel Providing Packs for Vehicles and Stationary Storage

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Itochu Corporation, Mazda, Family Mart, EnerDel and 11 other partners have launched a 3-year project in Tsukuba City, Japan—the “Green Crossover Project”—designed to showcase a real-world integration of the smart grid, stationary lithium-ion grid storage, electric vehicles, rapid recharging and renewable energy technologies.

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UC Riverside team develops new coating strategy for Li-metal anodes to prevent dendrite formation

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The coating layer can generate better control of the lithium ion flow and suppress the lithium dendrite growth and therefore form a uniform and stable solid electrolyte interphase. High capacity lithium (Li) ion batteries are highly desirable now for applications in consumer electronics, electrical vehicles, and grid storage.

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Profile: Li-ion Provider Compact Power, Inc. Focusing on the Automotive and Vehicle Markets

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Green Car Congress recently had the opportunity to spend some time with Dr. Prabhakar Patil, the CEO of Compact Power, Inc. CPI) shortly after GM selected CPI and its parent LG Chem as the provider for the Li-ion batteries for the Extended Range Electric Vehicle (E-REV) Chevy Volt. (GM by Bill Cooke. Company Overview.

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AllCell and Matra Debut Solar Energy Storage Battery Swap and Charging System at Paris Motor Show

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The Paris Motor Show saw the debut of a solar energy storage system to support light electric vehicle battery swaps and charging. An extra option allows the solar grid-integrated system to supply energy to utility customers during high-rate and peak demand periods, reducing energy costs and increasing renewable energy usage.

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Townsend-AllCell JV to commercialize battery passive thermal management technology

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Townsend-AllCell will have the exclusive world-wide rights to commercialize AllCell’s patented technology for automotive battery applications plus additional rights for other markets including grid energy storage applications. Lithium-ion batteries generate heat as a by-product of discharge.

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APRA-E awards WUSTL $2M to develop predictive battery management system for plug-in vehicles; targeting more efficient use

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Louis (WUSTL) will receive $2 million from the US Department of Energy’s ARPA-E to design a predictive battery management system for lithium-ion batteries to guarantee their longevity, safety and performance. If Li-ion batteries are charged too quickly, they can heat up and may explode. Earlier post , earlier post.).

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PNNL study outlines requirements for grid storage, reviews four electrochemical energy storage systems: vanadium redox flow, Na-beta, Li-ion and lead-carbon

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published in the ACS journal Chemical Reviews , reviews in detail four stationary storage systems considered the most promising candidates for electrochemical energy storage: vanadium redox flow; sodium-beta alumina membrane; lithium-ion; and lead-carbon batteries. In their study, Yang et al.

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