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Phillips 66 receives $3M grant to advance reversible solid oxide fuel cell technology

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Department of Energy to advance the development of high-performance reversible solid oxide fuel cells (RSOFC). Phillips 66 will collaborate with the Georgia Institute of Technology (Georgia Tech) to demonstrate the commercial feasibility of a low-cost and highly efficient RSOFC system for hydrogen and electricity generation.

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Georgia Tech team develops simple, low-cost process for oxide nanowires; superior separators for Li-ion batteries

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Researchers at Georgia Tech have developed a simple technique for producing oxide nanowires directly from bulk materials under ambient conditions without the use of catalysts or any external stimuli. The dissolution process generates hydrogen gas, which could be captured and used to help fuel the heating step. —Gleb Yushin.

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Georgia Tech team develops highly efficient multi-phase catalyst for SOFCs and other energy storage and conversion systems

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Researchers at Georgia Tech, with colleagues in China and Saudi Arabia, have developed a rationally designed, multi-phase catalyst that significantly enhances the kinetics of oxygen reduction of the state-of-the-art solid oxide fuel cell cathode. The ions meet to make water, which exits the fuel cell. cm 2 at 600 °C.

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Neo Performance Materials and Energy Fuels launching US-European rare earth production initiative

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Neo Performance Materials and Energy Fuels Inc. Energy Fuels will process the monazite sands into a mixed rare earth carbonate (RE Carbonate) in Utah for use as feed material for Neo’s value-added separated rare earth production plant in Europe.

Energy 186
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DOE to award $10.2M to 16 solid oxide fuel cell projects

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million in funding to advance solid oxide fuel cell (SOFC) technology. The new projects were selected under funding opportunity announcement DE-FOA-000 1735, Solid Oxide Fuel Cell Prototype System Testing and Core Technology Development, which supports development of reliable and robust SOFC technology for first-of-a-kind fuel cell systems.

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Waste Management and Renmatix to explore conversion of urban waste to low-cost cellulosic sugar via supercritical hydrolysis

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and Renmatix, a manufacturer of biobased sugar intermediates for global chemical and fuel markets, have entered into a joint development agreement (JDA) to explore the feasibility of converting post-consumer waste into affordable, sufficient-quality sugars for manufacturing biobased materials using Renmatix’ supercritical hydrolysis technology.

Waste 274
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DOE awards $17M to FY 2014 SBIR Phase II projects; includes Si/graphene anodes, motor windings, exhaust treatments

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The selected projects include 6 vehicle-related technologies and 2 hydrogen and fuel cell technologies, as well as new hydropower, heat pump, solar and manufacturing technologies. The reduced fuel consumption will extend the effective range of the turbo vehicle. Low-Cost, High-Energy Si/Graphene Anodes for Li-Ion Batteries.

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