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24M and partners awarded $3.5M from ARPA-E to develop ultra-high-energy density batteries with new lithium-metal anodes

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The semi-solid thick electrode is a material science innovation originating in Dr. Yet-Ming Chiang’s lab at MIT. (Dr. Those inactive materials are expensive and wasteful. Using thick electrodes, the cell also stores more energy, bettering the performance of the battery as well as its cost. Click to enlarge. Click to enlarge.

Li-ion 150
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ARPA-E Selects 37 Projects for $106M in Funding in Second Round; Electrofuels, Better Batteries and Carbon Capture

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This process is less than 1% efficient at converting sunlight to stored chemical energy. The project also includes a proprietary process to convert waste biomass into carbon dioxide and hydrogen to feed the bioreactor, allowing butanol production from waste feedstocks. Lawrence Berkeley National Lab. (UC Harvard, Univ.

Carbon 249
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PHEVLERs are the Zero CO2 Clean Green Machines of the Future

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On the other hand, drivers of other vehicles waste considerable time making special trips to refuel their internal combustion engine (ICE) vehicles at the liquid fuel station or their battery electric vehicle (BEV) at the rapid recharging station. 5 ] Increasing numbers of drivers can get PEV charging at their workplace. [

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24M emerges from stealth mode with new semi-solid Li-ion cell; <$100/kWh by 2020

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The semisolid thick electrode is a material science innovation originating in Dr. Chiang’s lab at MIT. Those inactive materials are expensive and wasteful. —“Semi-Solid Lithium Rechargeable Flow Battery”. Using thick electrodes, the cell also stores more energy, bettering the performance of the battery as well as its cost.

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MIT Researchers Find That Elastic Energy Storage Systems Built With Carbon Nanotubes Could Match Li-ion Battery Energy Densities

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New research by MIT scientists suggests that carbon nanotubes could be used to create elastic energy storage systems with energy densities that could be three orders of magnitude higher than those of conventional steel springs, and comparable to Li-ion batteries with potentially more durability and reliability. Hill et al. Click to enlarge.

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DOE ARPA-E awards $156M to projects to 60 projects to accelerate innovation in clean energy technologies

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production of oil, which is stored in seeds and is convertible to. wasted energy in plants into energy-dense fuel molecules. is one of the most energy dense forms of stored energy in. engineer sugarcane and sorghum to produce and store oil, a. system to pump, heat, store, and discharge the molten glass.

Energy 294
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The Reality of Fast Charging for Electric Vehicles

Tony Karrer Delicious EVdriven

» Transportation | March 28, 2009 | by EV World The Reality of Fast Charging for Electric Vehicles By Noel Adams Every so often I read articles, like the ones recently about a breakthrough from researchers at MIT, which will allow batteries to charge quickly, in this case, in 2 seconds. Reprinted with permission from EV World.