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DOE awards $22.1M to 10 nuclear technology projects including clean hydrogen production

Green Car Congress

The process consists of two key steps: Solid oxide co-electrolysis (SOCC) technology developed at GE Research Center (GRC) simultaneously converts carbon dioxide and steam into syngas (H 2 :CO) from nuclear heat and electricity. 3M Company will develop an isotope recovery process to enable commercial deployment of molten salt reactors.

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SDTC awards C$1.5M to support Molten Salt Catalyzed Gasification for hydrogen production; targeting reduced GHG footprint for oil sands synthetic crude

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million investment from Sustainable Development Technology Canada to support the development and commercialization of a new hydrogen manufacturing technology called Molten Salt Catalyzed Gasification (MSG), originally developed at the US Idaho National Laboratory (INL). A consortium led by Canada-based Western Hydrogen Ltd. Background.

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Convert Oil Wells to Solve the Solar Storage Problem

Cars That Think

The California-based Hyperlight Energy will be piloting an installation where they plan to use existing oil wells as solar thermal wellsprings, with the stored energy being converted back to clean electricity when required. During winter, he adds, they can pull up the energy and generate zero-carbon electricity based on the demand curve. “You

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Thermal Solar Goes Where PVs Can’t

Cars That Think

Leading the boom is the photovoltaic (PV) panel, which converts sunlight into electricity using semiconductors. Inside the tower, molten salts are heated to 565 °C and flow down into storage tanks, turning water into steam to drive turbines. The closed-loop system has a record 17.5-hour It's flexible.

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Thermal Solar Goes Where PVs Can’t

Cars That Think

Leading the boom is the photovoltaic (PV) panel, which converts sunlight into electricity using semiconductors. Inside the tower, molten salts are heated to 565 °C and flow down into storage tanks, turning water into steam to drive turbines. The closed-loop system has a record 17.5-hour It's flexible.

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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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The new Stanford approach was inspired by ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBisCO)—an enzyme involved in the first major step of carbon fixation, a process by which atmospheric carbon dioxide is converted by plants and other photosynthetic organisms to molecules such as glucose.

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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.). Source: ARPA-E.

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