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INL researchers develop high-performance oxygen electrode for PCEC cell; high-temperature electrolysis

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Researchers at Idaho National Laboratory have developed a new electrode material for a protonic ceramic electrochemical cell (PCEC) that can efficiently convert excess electricity and water into hydrogen. Water splitting reaction on oxygen electrode and PNC’s hydration. (a) The triple conducting oxide of PrNi 0.5 Ding et al.

Hydrogen 339
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DOE awards FuelCell Energy additional $8M for Phase 2 ARPA-E project with differentiated solid oxide platform

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Separately, the company reports making progress on the previously announced Modular Solid Oxide Electrolysis project funded by DOE’s Office of Energy Efficiency and Renewable Energy (EERE) to advance the use of its solid oxide platform for high efficiency electrolysis.

Energy 170
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ARPA-E awarding $39M to 16 projects to grow the domestic critical minerals supply chain

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First, an electric potential will be applied to water to simultaneously produce acidity and alkalinity. Idaho National Laboratory. million tonnes of CO 2 per year will be sequestered in mine tailings that are permanently and safely stored with a decrease of 100 kg of CO 2 equivalent per tonne of ore processed. An estimated 2.2

Supplies 345
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11 Intriguing Engineering Milestones to Look for in 2023

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The world’s largest pumped-energy-storage station—a technique that stores energy by pumping it uphill to a reservoir—is set to complete phase two of its construction in 2023. United States’ Wind on the Wire The largest renewable-energy infrastructure project in U.S.

Engine 121
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DOE awards $20M to project to produce clean hydrogen from nuclear power

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Six tonnes of stored hydrogen will be used to produce approximately 200 MWh electricity during times of high demand, and may be also used to make chemicals and other fuels. The project will provide insights about integrating nuclear energy with hydrogen production technologies and inform future clean hydrogen production deployments at scale.

Clean 327
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Using the PHEV (Plug-In Hybrid Electric Vehicle) to Transition Society Seamlessly and Profitably From Fossil Fuel to 100% Renewable Energy

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It offers the solution to several significant transitions we need: moving society from burning fossil fuels to substituting renewable resource fuels such as solar, wind and biofuels; and from using fossil materials as fuel to using them for other recyclable uses. How PHEV provides Smooth Transitions from fossil fuel to renewables.

PHEV 150
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DOE announces more than $65M in public and private funding to commercialize promising energy technologies

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Idaho National Laboratory. DME as a Renewable Hydrogen Carrier: Innovative Approach to Renewable Hydrogen Production, $1,500,000. National Renewable Energy Laboratory. Energy Storing Efficient HVAC, $595,558. BioBlend Renewable Resources (Elk Grove Village, Illinois). Oberon Fuels (San Diego, California).