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U Kentucky CAER receives $1M for carbon fiber research

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Department of Energy (DOE) grant to continue their research in developing low-cost, high-strength carbon fiber. The funding was part of DOE’s strategy to invest in discovery and development of novel, low-cost materials necessary for hydrogen storage and for fuel cells onboard light-duty vehicles.

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GWU team develops low-cost, high-yield one-pot synthesis of carbon nanofibers from atmospheric CO2

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A team led by Dr. Stuart Licht at The George Washington University in Washington, DC has developed a low-cost, high-yield and scalable process for the electrolytic conversion of atmospheric CO 2 dissolved in molten carbonates into carbon nanofibers (CNFs.) —Ren et al. —Stuart Licht.

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DOE to issue a funding opportunity announcement on H2@Scale new markets

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The R&D would be executed in collaboration with DOE’s Advanced Manufacturing Office (AMO) and would enable large-scale domestic electrolyzer manufacturing focused on reducing the cost of megawatt- and gigawatt-scale electrolyzers for diverse end uses. Advanced Carbon Fiber for Compressed Hydrogen and Natural Gas Storage Tanks.

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DOE issues $10M incubator FOA for batteries, power electronics, engines, materials, fuels and lubricants

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As described in multiple DOE reports, the main barriers to widespread PEV commercialization are the cost; performance and life; and abuse tolerance of high?energy Specifically: the current cost of high?energy Carbon Fiber or Lightweight Materials. Most critical is the cost of the carbon fiber.

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LeMond Composites licenses ORNL low-cost carbon fiber manufacturing process; transportation, renewable energy, & infrastructure

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LeMond Composites, founded by three-time Tour de France champion Greg LeMond, has licensed a low-cost, high-volume carbon fiber manufacturing process developed at the US Department of Energy’s Oak Ridge National Laboratory (ORNL). Earlier post.)

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DOE issues FOA for up to $4M for development of advanced H2 storage systems and materials

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The FOA includes the following topics: Topic Area 1: Reducing the cost of compressed hydrogen storage systems. 350 to 700 bar) storage vessels are constructed using expensive high-strength carbon fiber. develop novel, advanced hydrogen storage technologies. Currently, high-pressure (i.e.,

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US DOE awards more than $175M to 40 projects for advanced vehicle research and development

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This project will develop a new process that enables low-cost, domestic manufacturing of magnesium. This project will develop a novel low cost route to carbon fiber using a lignin/PAN hybrid precursor and carbon fiber conversion technologies leading to high performance, low-cost carbon fiber.