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Harvard team demonstrates new metal-free organic–inorganic aqueous flow battery; potential breakthrough for low-cost grid-scale storage

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As the fraction of electricity generation from intermittent renewable sources—such as solar or wind—grows, the ability to store large amounts of electrical energy is of increasing importance. With a whole field of turbines or a large solar farm, one could imagine a few very large storage tanks.

Low Cost 374
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New $30M ARPA-E program to develop new solar conversion and storage technologies; targeting higher solar penetration in mix

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Schematic comparing the cost and dispatchability of PV to CSP with thermal storage. The “PV+Storage” box includes the high cost of electrical storage for PV. The FOCUS Program target zone for electricity generation is indicated. a) Hybrid solar converter (award Categories 1A and 1B).

Solar 290
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US Senators Alexander, Webb Introduce $20B Energy Legislation with Emphasis on Nuclear Energy Investment

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“The Clean Energy Act of 2009” spends $20 billion over the next 10 to 20 years to fund a series of loan guarantees; nuclear education and workforce training assistance; research into nuclear reactor lifetime-extension; and the development of solar power, biofuels, and alternative power technologies.

Energy 199
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Liquid Metal Battery Corp secures patent rights from MIT

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Liquid Metal Battery Corporation (LMBC), a Cambridge, Massachusetts company founded in 2010 to develop new forms of electric storage batteries that work in large, grid-scale applications, has secured the rights to key patent technology from MIT. —Philippe Boisseau, President Total Gas & Power.

MIT 210
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Japan V2G demonstrator project using EVs as virtual power plant resource; METI funding

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Commencing today, the project aims to build a vehicle-to-grid (V2G) system, and through this a business model that utilizes the electricity storage capabilities of multiple EV/PHEVs to regulate power demand and supply between the grid and electric vehicles.

Japan 218
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Sandy solution for renewable energy storage; Thermal Energy Storage System

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Sand is emerging as a key ingredient in the race to develop a viable electricity storage system for renewable energies. 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. by Andrew Spence.

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New Electrostatic Nanocapacitors Offer High Power and High Energy Density

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Our primary target is as part of a hybrid battery-capacitor system for electric cars. But there are many small scale applications, [including] better electrical storage systems for cellphones or laptops.” Multiple energy storage panels would be stacked together inside a car battery system or solar panel.

Energy 150