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EU investing €1.8B in 17 large-scale clean tech projects

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billion in 17 large-scale innovative clean-tech projects with a third round of awards under the Innovation Fund. capture and liquefaction at a cement plant to storage in offshore sites. emissions coming from exhaust gases produced during lime production and store them permanently in offshore geological formations in France.

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4 companies jointly propose $8B green energy initiative for LA area; Wyoming wind, Utah storage, transmission

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Four companies—Pathfinder Renewable Wind Energy, Magnum Energy, Dresser-Rand and Duke-American Transmission—have proposed a first-in-the-US, $8-billion green energy initiative that would bring large amounts of clean electricity to the Los Angeles area by 2023. million megawatt-hours per year vs. 3.9

Utah 261
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PHEVLERs are the Zero CO2 Clean Green Machines of the Future

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The 2016 Chevrolet Volt with an electric range of 53 miles [ 2 ] is the first commercial car that almost qualifies as a PHEVLER. PHEVLERs [ 3 ] are a disruptive technology that will help revolutionize both the clean transportation and the clean stationary energy sectors of our economy. He has a Ph.D. Table of Contents.

Clean 150
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UniEnergy signs commercialization agreement for PNNL-developed vanadium redox flow battery

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UniEnergy Technologies LLC has signed a license agreement with Battelle to further develop and commercialize a vanadium redox flow battery developed at Pacific Northwest National Laboratory (PNNL) that holds promise for storing large amounts of renewable energy and providing greater stability to the energy grid. Earlier post.).

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Liquid metal battery company Ambri raises $35M in Series C

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Ambri (formerly Liquid Metal Battery Corporation) is developing an electricity storage solution that was invented in the lab of Dr. Donald Sadoway, a professor at the Massachusetts Institute of Technology, along with Dr. David Bradwell (Ambri’s Chief Technology Officer and co-founder). Earlier post.)

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The Role of Power Utilities in Turning EVs into a Grid Asset – Part 2

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When wind and sun are plentiful, excess clean energy can be stored in the batteries of EVs that are parked and connected to smart chargers. Stored energy is discharged from EV batteries at peak demand or when renewable energy availability is reduced.

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PNNL study outlines requirements for grid storage, reviews four electrochemical energy storage systems: vanadium redox flow, Na-beta, Li-ion and lead-carbon

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Classification of potential electrical storage for stationary applications. The future grid will face significant challenges by providing clean power from intermittent resources to a much more dynamic load. The most commonly used systems today work by converting electricity to kinetic (e.g., Credit: ACS, Yang et al.

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