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Japan team evaluates battery-assisted low-cost hydrogen production from solar energy

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Comprehensive analysis of various factors, including rechargeable battery and electrolyzer capacities, enables the estimation of technology levels required for low-cost hydrogen production. Credit: NIMS. 2018.11.119 ).

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IPG to demo Flameless Ceramic Turbine for clean, off-grid power in EV charging

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IPG’s project will demonstrate the role of Flameless Ceramic Turbine technology in bringing EV charging to high-use and remote locations through clean, cheap, grid-independent power generation. But, in many high-use areas and remote locations, upgrading grid connections to meet future charging demand is not practical or commercially viable.

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Opinion: Reinventing fuel-based power for a more secure and resilient grid

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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.

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DOE awards $200k to support NCSU project on extreme fast charging for EVs

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Level 1 chargers, which rely on standard 120V outlets and alternating current, are the slowest available charging method, taking approximately 50 hours to charge a standard 70kWh EV battery. This approach eliminates the 60 hertz transformer that normally steps the grid voltage down to 480 volts.

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DOE awarding $35M to 11 projects for hydrokinetic turbine development; ARPA-E SHARKS

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Hydrokinetic energy is an abundant renewable resource that can boost grid resiliency and reduce infrastructure vulnerability, but it is currently a cost prohibitive option compared to other energy generating sources. The turbine will be designed for power delivery to remote and local grids. Westergaard Solutions, Inc.

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Eos Energy launches $500M Project AMAZE with $398.6M conditional loan guarantee from DOE; long-term zinc-based storage

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The bipolar structure simplifies internal battery connections to reduce internal resistance and improve round-trip efficiency. The Eos Z3 battery contains predominately American components and is specifically designed for mass production and meeting low-cost, long-duration, grid-scale stationary energy storage needs.

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Siemens, Duke Energy and Ford demonstrate lower cost home smart charging technology for plug-ins; due on market next year

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million in development funding from the US Department of Energy (DOE) to support research aimed at significantly reducing the current costs of electrical vehicle (EV) chargers and developing “smart” charging capabilities that support power grid efficiency and consumer demand. —Barry Powell, head of Siemens Low Voltage & Products.

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