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ARPA-E awarding $30M to 12 hybrid solar projects; conversion and storage

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Under the FOCUS program, projects will develop advanced solar converters that turn sunlight into electricity for immediate use, while also producing heat that can be stored at low cost for later use as well as innovative storage systems that accept both heat and electricity from variable solar sources. Earlier post.).

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Stanford team devises new bio-inspired strategy for using CO2 to produce multi-carbon compounds such as plastics and fuels

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In the paper in Nature they showed that intermediate-temperature (200 to 350 ˚C) molten salts containing caesium or potassium cations enable carbonate ions (CO 3 2– ) to deprotonate very weakly acidic C–H bonds, generating carbon-centered nucleophiles that react with CO 2 to form carboxylates. —Banerjee et al.

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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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The primary goal of this funding opportunity ( DE-FOA-0000949 ) is to provide disruptive new solar conversion and storage technology options to enable a much higher penetration of solar energy generation into the US energy mix. The FOCUS Program target zone for electricity generation is indicated. Source: ARPA-E. 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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wasted energy in plants into energy-dense fuel molecules. High Performance, Low Cost Superconducting Wires and Coils. for High Power Wind Generators The University of Houston will develop a new, low-cost. American Superconductor will develop a new, low-cost. light energy. Lawrence Berkeley.

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DOE to award more than $55M to 31 projects for plug-in and efficient vehicle technologies; Delphi receives $10M to further GDCI

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Development of Low-cost, High Strength Automotive Aluminum Sheet (Area of Interest 1). This project will develop high specific energy, high power and highly reversible Li-air batteries that are based on the concept of replacing traditional electrolytes in the air electrode with a stable inorganic molten salt electrolyte.

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