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DOE awards $20M to 10 hydrogen production and delivery technologies projects

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The US Department of Energy (DOE) will award $20 million to ten new research and development projects that will advance hydrogen production and delivery technologies: six on hydrogen production and four on hydrogen delivery. million to develop a reactor for hydrogen production from bio-derived liquids.

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DOE to award $15.8M to 30 hydrogen and fuel cell technologies projects

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million for 30 new projects aimed at discovery and development of novel, low-cost materials necessary for hydrogen production and storage and for fuel cells onboard light-duty vehicles. Advanced Water Splitting Materials. Hydrogen Storage Materials Discovery. Hydrogen Storage Materials Discovery. DOE share (FY17).

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DOE awards $2.4M to hydrogen refueling projects

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million to 5 projects to collect and analyze performance data for hydrogen fueling stations and advanced refueling components. These new projects will collect data and monitor the performance of hydrogen fuel stations, advanced components and other innovative hydrogen technologies using renewable energy or natural gas.

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DOE to invest $30M to further H2 and fuel cell technology as industry continues strong growth

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To further this emerging market, DOE also announced a notice of intent ( DE-FOA-0001411 ) to invest $30 million, subject to appropriations, to advance fuel cell and hydrogen technologies. This partnership will allow for broad dissemination of information and increased awareness of hydrogen and fuel cell technologies.

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First Hydrogen Filling Station In U.S. Opens For Fuel-Cell Cars

Green Car Reports

Nonetheless, last week, the first commercial hydrogen filling station in the country was opened in Wallingford, Connecticut, by startup firm SunHydro. The company generates hydrogen onsite using electricity from an array of photovoltaic solar cells that splits apart water molecules to yield hydrogen and oxygen.

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Sun Catalytix Signs $4M ARPA-E Contract and Forms Scientific Advisory Board; Affordable Catalysts for Water Splitting

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The ability to convert electrical energy into hydrogen reducing equivalents is fundamental to an enormous number of processes. Immediately prior to Foley Hoag, Mark served as Counsel to the Connecticut Clean Energy Fund. Earlier post.). Earlier post.).

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Harvard team demonstrates new metal-free organic–inorganic aqueous flow battery; potential breakthrough for low-cost grid-scale storage

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As the fraction of electricity generation from intermittent renewable sources—such as solar or wind—grows, the ability to store large amounts of electrical energy is of increasing importance. Solid-electrode batteries maintain discharge at peak power for far too short a time to fully regulate wind or solar power output.

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