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Ohio Third Frontier Advanced Energy Program Recommends Nearly $7.2M in Funding for 6 Projects; 3 Li-ion Awards

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The Ohio Third Frontier Advanced Energy Program supports research and development that addresses the technical and cost barriers to commercialization of advanced energy components and systems, with preference to wind, biomass, and energy storage in Ohio. Development and Commercialization of Composite Towers for Wind Turbines.

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Hitachi Doubles Life of Industrial Li-ion Batteries with Manganese-Based Cathode Materials

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Lithium-ion batteries using the newly developed cathode material are expected to be used for electrical power storage in wind power generation and other new energy fields, and as industrial power sources for electric-powered construction machinery designed to reduce greenhouse gas emissions.

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GM and ABB demonstrate community energy storage system built from 5 used Volt batteries; Duke Energy testing

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GM and ABB partnered to produce a prototype back-up power storage unit that repackages five used Volt batteries into a modular unit that becomes an uninterruptible power supply and grid power balancing system. a community energy storage system—built from five used Chevrolet Volt batteries. Click to enlarge.

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DOE Awarding $620M for Smart Grid Demonstration and Energy Storage Projects

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In the second group, an additional 16 awards for a total of $185 million will help fund utility-scale energy storage projects that will enhance the reliability and efficiency of the grid, while reducing the need for new electricity plants. Tehachapi Wind Energy Storage Project. Beacon Power Corporation (MA). 29,561,142.

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Prototype electric New Flyer transit bus powered by 120 kWh MHI MLiX Li-ion pack in operational testing in Manitoba, Canada

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The 50 Ah battery was designed to have a high energy density through the use of a conductive network with a proper dispersion of conductive materials, while the 20 Ah battery was designed to have a high power density for hybrid vehicles by reducing the internal resistance with an optimized electrode thickness.

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NYSERDA Awards Ultralife $2.4M for Advanced Energy Storage System

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million by The New York State Energy Research and Development Authority (NYSERDA) for the design, development, prototyping, scale-up and installation of a 1 megawatt-hour advanced energy storage system on Ultralife’s Newark, New York corporate campus. Ultralife Corporation recently was awarded approximately $2.4

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New MIT metal-mesh membrane could solve longstanding problems with liquid metal displacement batteries; inexpensive grid power storage

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A battery, based on electrodes made of sodium and nickel chloride and using thea new type of metal mesh membrane, could be used for grid-scale installations to make intermittent power sources such as wind and solar capable of delivering reliable baseload electricity.

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