Remove Cost Remove Grid Remove Power Storage Remove Recharge
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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. Al 2 O 3 membrane. Elliott Professor of Materials Chemistry.

MIT 150
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Mitsubishi Heavy to Enter Lithium-ion Secondary (Rechargeable) Battery Business

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(MHI) has decided to build a commercial production verification plant in Nagasaki Prefecture and launch its operation by autumn 2010 in a move toward the company’s full-scale entry into the lithium-ion secondary (rechargeable) battery market. The commercial production verification plant, slated for.

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

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The US Department of Energy is awarding $620 million for projects around the country to demonstrate advanced Smart Grid technologies and integrated systems. Smart grid regional demonstrations involving plug-in vehicles include (ranked by DOE funding): Columbus Southern Power Company (doing business as AEP Ohio).

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Ford, Detroit Edison and Extreme Power Working to Build One of Michigans Largest Solar Power Systems at Michigan Assembly Plant; 2 MWh Battery Storage System

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The combined systems are expected to give Michigan Assembly the largest solar power array in Michigan and save an estimated $160,000 per year in energy costs. The renewable energy collected by the solar system will go directly into the energy-efficient microgrid to help provide power to the plant.

Michigan 186
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Volvo Car Group testing lightweight structural energy storage material applied in trunk lid and plenum cover

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The material is recharged and energized by the use of brake energy regeneration in the car or by plugging into the electrical grid. The trunk lid is a functioning electrically powered storage component and has the potential to replace the standard batteries seen in today’s cars. Click to enlarge. Click to enlarge.

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Researchers demonstrate concept desalination battery

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Reverse osmosis requires a large electrical energy input, which accounts for 44% of its cost, and it is based on selective membranes, which are prone to fouling and require frequent replacement. Thermal energy based multistage flash distillation requires energy intensive heating to temperatures above 90 °C, accounts for 50% of its cost.

Concept 246
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The Essential Guide to EV Smart Charging and Smart Energy Management

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Smart EV Charging and Vehicle-to-Grid (V2G). Smart EV charging uses intelligence to manage when and how an electric vehicle plugged into a smart charger will receive power for charging based on the cost of electricity, its availability, and the needs of the driver. What are the Benefits of Smart EV Charging?