Remove 2015 Remove Hydrogen Remove Sodium Remove Transportation
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New heterogeneous acid catalyst shows high activity in release of hydrogen from sodium borohydride; lowest activation energy yet reported

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A team from the Indian Institute of Technology Bombay has devised a heterogeneous acid catalyst, silica sulfuric acid, that shows high activity towards releasing hydrogen from sodium borohydride (NaBH 4 ), with a hydrolysis rate of 5.5 Millenium Cell liquidated in 2008.). Earlier post.). Earlier post.). 2014.11.040. Demirci, U.

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Self-propelled catalytic microparticles boost hydrogen release from liquid storage media

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Researchers at the University of California San Diego (UCSD) have developed catalytically active micromotors that significantly increase the release of hydrogen from liquid storage media. In a paper in the journal Angewandte Chemie , they introduce their new concept with a model vehicle powered by a hydrogen–oxygen fuel cell.

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NSF to award $13M for fundamental engineering research on production of electricity and fuels

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Advanced Batteries for Transportation and Renewable Energy Storage. Radically new battery systems or breakthroughs based on existing systems can move the US more rapidly toward a more sustainable transportation future. Closing date for applications is 20 October 2015. Photovoltaic (PV) Solar Energy.

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Successful performance test of natural Albany graphite versus synthetic graphite in a Ballard fuel cell stack; potential cost reduction

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Zenyatta called the results another step in the process of qualifying Zenyatta’s Albany graphite for existing fuel cell markets in transportation and stationary energy storage. treatment using sodium hydroxide. Test results released in March of 2015 showed the Albany graphite to be suitable for hydrogen fuel cell components.

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US DOE Issues Request for Information on Hydrogen and Fuel Cell Market Development; Reports to Congress on Program

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The US Department of Energy (DOE) Hydrogen Program has issued a Request for Information (RFI) on potential early markets and deployment opportunities for hydrogen and fuel cells. DOE is seeking to facilitate the market penetration of hydrogen and fuel cell products through higher volume purchases (e.g., Market development RFI.

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Ultrahigh-capacity anodes derived from natural silk for Li-ion batteries; other energy storage applications

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The nanosheet architecture not only offers minimum diffusive resistance to mass transport on a large electrode/electrolytes interface for charge-transfer reaction but also provides easy ion transport by shortening the diffusion pathways. The layer-to-layer distance is 0.40 —Hou et al.

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DOE awarding >$24M to 77 projects through Technology Commercialization Fund

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OTT was established in 2015 to advance the economic, energy, and national security interests of the United States by expanding the commercial impact of the Department of Energy’s research and development portfolio. Hydrogen Contaminant Detector, $150,000 Skyre, Inc., Touchstone Research Laboratory, Triadelphia, W. Redmond, Wash.