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New nanoparticle copper compound cathode could enable low-cost, long-life and high-power potassium-ion batteries for grid storage

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Yi Cui has developed nanoparticle copper hexacyanoferrate (CuHCF) battery cathode materials that demonstrate long cycle life and high power for use in grid storage applications. Short-term transients, including those related to wind and solar sources, present challenges to the electrical grid. Cost is a greater concern.

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Sandia researchers developing new family of metal-based ionic liquids for low-cost, efficient flow batteries

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The research, some of which was published last year in the RSC journal Dalton Transactions , might lead to energy storage systems that can help economically and reliably incorporate large-scale intermittent renewable energy sources into the electric grid. copper ones, are also readily available and low cost. —Imre Gyuk.

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Rechargeable membrane-less hydrogen bromine flow battery shows high power density

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That is about three times as much power per square centimeter as other membrane-less system—a power density that is an order of magnitude higher than that of many lithium-ion batteries and other commercial and experimental energy-storage systems. One such permutation is the hydrogen bromine flow battery.

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UC Davis researchers suggest we may be at the beginning of a real hydrogen transition in transportation

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In many respects, hydrogen FCVs could offer features that are similar to today’s gasoline cars and are more challenging to achieve in battery-powered vehicles, including good performance, large vehicle size, refueling time of 3-5 minutes and a range of 300-400 miles. Transition issues. Fuel Cells Hydrogen Policy'

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Australia Goes All-in on Green Hydrogen

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Resource-poor Asian neighbors such as Japan and Korea are also counting on Aussie green hydrogen to help get them off fossil fuels in the decades ahead. Add up the capacity figures in all of Australia’s current proposals to produce green hydrogen and the sum exceeds Australia’s power-generating capacity. Why a hydrogen truck?

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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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The future grid will face significant challenges by providing clean power from intermittent resources to a much more dynamic load. To smooth out the intermittency of renewable energy production, low-cost electrical energy storage (EES) will become necessary. —Yang et al. flywheel) or potential energy (e.g.,

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DOE to issue $56M funding opportunity for vehicle technologies in January

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Grid Modernization for Electric Vehicles. Accelerated Development and Deployment of Low-Cost Automotive Magnesium (Mg) Sheet Components. Advances for the Production of Low Cost Electric Drive Vehicle Motors. Funds may not be used for the purchase or installation of fueling infrastructure or vehicles.

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