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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.

MIT 150
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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 40-foot “E-Bus” is based on New Flyer’s 40-foot Xcelsior heavy-duty transit bus and is powered by a 120 kWh lithium-ion rechargeable battery pack developed by MHI. 2012) Development of Large High-performance Lithium-ion Batteries for Power Storage and Industrial Use. Daisuke Mukai et al. Daisuke Mukai et al.

Canada 294
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Mitsubishi Heavy develops containerized large-scale Li-ion energy storage system

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Japan’s first container-type large-capacity energy storage system using lithium-ion rechargeable batteries. Power conditioners are used for direct current (DC)/alternating current (AC) conversion and their input/output control. The system has a capacity of 408 kWh and is designed to have a system efficiency of 90%.

Li-ion 210
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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.